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Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential

Human genetic studies support an inverse causal relationship between leukocyte telomere length (LTL) and coronary artery disease (CAD), but directionally mixed effects for LTL and diverse malignancies. Clonal hematopoiesis of indeterminate potential (CHIP), characterized by expansion of hematopoieti...

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Autores principales: Nakao, Tetsushi, Bick, Alexander G., Taub, Margaret A., Zekavat, Seyedeh M., Uddin, Md M., Niroula, Abhishek, Carty, Cara L., Lane, John, Honigberg, Michael C., Weinstock, Joshua S., Pampana, Akhil, Gibson, Christopher J., Griffin, Gabriel K., Clarke, Shoa L., Bhattacharya, Romit, Assimes, Themistocles L., Emery, Leslie S., Stilp, Adrienne M., Wong, Quenna, Broome, Jai, Laurie, Cecelia A., Khan, Alyna T., Smith, Albert V., Blackwell, Thomas W., Codd, Veryan, Nelson, Christopher P., Yoneda, Zachary T., Peralta, Juan M., Bowden, Donald W., Irvin, Marguerite R., Boorgula, Meher, Zhao, Wei, Yanek, Lisa R., Wiggins, Kerri L., Hixson, James E., Gu, C. Charles, Peloso, Gina M., Roden, Dan M., Reupena, Muagututi’a S., Hwu, Chii-Min, DeMeo, Dawn L., North, Kari E., Kelly, Shannon, Musani, Solomon K., Bis, Joshua C., Lloyd-Jones, Donald M., Johnsen, Jill M., Preuss, Michael, Tracy, Russell P., Peyser, Patricia A., Qiao, Dandi, Desai, Pinkal, Curran, Joanne E., Freedman, Barry I., Tiwari, Hemant K., Chavan, Sameer, Smith, Jennifer A., Smith, Nicholas L., Kelly, Tanika N., Hidalgo, Bertha, Cupples, L. Adrienne, Weeks, Daniel E., Hawley, Nicola L., Minster, Ryan L., Deka, Ranjan, Naseri, Take T., de las Fuentes, Lisa, Raffield, Laura M., Morrison, Alanna C., Vries, Paul S., Ballantyne, Christie M., Kenny, Eimear E., Rich, Stephen S., Whitsel, Eric A., Cho, Michael H., Shoemaker, M. Benjamin, Pace, Betty S., Blangero, John, Palmer, Nicholette D., Mitchell, Braxton D., Shuldiner, Alan R., Barnes, Kathleen C., Redline, Susan, Kardia, Sharon L.R., Abecasis, Gonçalo R., Becker, Lewis C., Heckbert, Susan R., He, Jiang, Post, Wendy, Arnett, Donna K., Vasan, Ramachandran S., Darbar, Dawood, Weiss, Scott T., McGarvey, Stephen T., de Andrade, Mariza, Chen, Yii-Der Ida, Kaplan, Robert C., Meyers, Deborah A., Custer, Brian S., Correa, Adolfo, Psaty, Bruce M., Fornage, Myriam, Manson, JoAnn E., Boerwinkle, Eric, Konkle, Barbara A., Loos, Ruth J.F., Rotter, Jerome I., Silverman, Edwin K., Kooperberg, Charles, Danesh, John, Samani, Nilesh J., Jaiswal, Siddhartha, Libby, Peter, Ellinor, Patrick T., Pankratz, Nathan, Ebert, Benjamin L., Reiner, Alexander P., Mathias, Rasika A., Do, Ron, Natarajan, Pradeep
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8986098/
https://www.ncbi.nlm.nih.gov/pubmed/35385311
http://dx.doi.org/10.1126/sciadv.abl6579
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author Nakao, Tetsushi
Bick, Alexander G.
Taub, Margaret A.
Zekavat, Seyedeh M.
Uddin, Md M.
Niroula, Abhishek
Carty, Cara L.
Lane, John
Honigberg, Michael C.
Weinstock, Joshua S.
Pampana, Akhil
Gibson, Christopher J.
Griffin, Gabriel K.
Clarke, Shoa L.
Bhattacharya, Romit
Assimes, Themistocles L.
Emery, Leslie S.
Stilp, Adrienne M.
Wong, Quenna
Broome, Jai
Laurie, Cecelia A.
Khan, Alyna T.
Smith, Albert V.
Blackwell, Thomas W.
Codd, Veryan
Nelson, Christopher P.
Yoneda, Zachary T.
Peralta, Juan M.
Bowden, Donald W.
Irvin, Marguerite R.
Boorgula, Meher
Zhao, Wei
Yanek, Lisa R.
Wiggins, Kerri L.
Hixson, James E.
Gu, C. Charles
Peloso, Gina M.
Roden, Dan M.
Reupena, Muagututi’a S.
Hwu, Chii-Min
DeMeo, Dawn L.
North, Kari E.
Kelly, Shannon
Musani, Solomon K.
Bis, Joshua C.
Lloyd-Jones, Donald M.
Johnsen, Jill M.
Preuss, Michael
Tracy, Russell P.
Peyser, Patricia A.
Qiao, Dandi
Desai, Pinkal
Curran, Joanne E.
Freedman, Barry I.
Tiwari, Hemant K.
Chavan, Sameer
Smith, Jennifer A.
Smith, Nicholas L.
Kelly, Tanika N.
Hidalgo, Bertha
Cupples, L. Adrienne
Weeks, Daniel E.
Hawley, Nicola L.
Minster, Ryan L.
Deka, Ranjan
Naseri, Take T.
de las Fuentes, Lisa
Raffield, Laura M.
Morrison, Alanna C.
Vries, Paul S.
Ballantyne, Christie M.
Kenny, Eimear E.
Rich, Stephen S.
Whitsel, Eric A.
Cho, Michael H.
Shoemaker, M. Benjamin
Pace, Betty S.
Blangero, John
Palmer, Nicholette D.
Mitchell, Braxton D.
Shuldiner, Alan R.
Barnes, Kathleen C.
Redline, Susan
Kardia, Sharon L.R.
Abecasis, Gonçalo R.
Becker, Lewis C.
Heckbert, Susan R.
He, Jiang
Post, Wendy
Arnett, Donna K.
Vasan, Ramachandran S.
Darbar, Dawood
Weiss, Scott T.
McGarvey, Stephen T.
de Andrade, Mariza
Chen, Yii-Der Ida
Kaplan, Robert C.
Meyers, Deborah A.
Custer, Brian S.
Correa, Adolfo
Psaty, Bruce M.
Fornage, Myriam
Manson, JoAnn E.
Boerwinkle, Eric
Konkle, Barbara A.
Loos, Ruth J.F.
Rotter, Jerome I.
Silverman, Edwin K.
Kooperberg, Charles
Danesh, John
Samani, Nilesh J.
Jaiswal, Siddhartha
Libby, Peter
Ellinor, Patrick T.
Pankratz, Nathan
Ebert, Benjamin L.
Reiner, Alexander P.
Mathias, Rasika A.
Do, Ron
Natarajan, Pradeep
author_facet Nakao, Tetsushi
Bick, Alexander G.
Taub, Margaret A.
Zekavat, Seyedeh M.
Uddin, Md M.
Niroula, Abhishek
Carty, Cara L.
Lane, John
Honigberg, Michael C.
Weinstock, Joshua S.
Pampana, Akhil
Gibson, Christopher J.
Griffin, Gabriel K.
Clarke, Shoa L.
Bhattacharya, Romit
Assimes, Themistocles L.
Emery, Leslie S.
Stilp, Adrienne M.
Wong, Quenna
Broome, Jai
Laurie, Cecelia A.
Khan, Alyna T.
Smith, Albert V.
Blackwell, Thomas W.
Codd, Veryan
Nelson, Christopher P.
Yoneda, Zachary T.
Peralta, Juan M.
Bowden, Donald W.
Irvin, Marguerite R.
Boorgula, Meher
Zhao, Wei
Yanek, Lisa R.
Wiggins, Kerri L.
Hixson, James E.
Gu, C. Charles
Peloso, Gina M.
Roden, Dan M.
Reupena, Muagututi’a S.
Hwu, Chii-Min
DeMeo, Dawn L.
North, Kari E.
Kelly, Shannon
Musani, Solomon K.
Bis, Joshua C.
Lloyd-Jones, Donald M.
Johnsen, Jill M.
Preuss, Michael
Tracy, Russell P.
Peyser, Patricia A.
Qiao, Dandi
Desai, Pinkal
Curran, Joanne E.
Freedman, Barry I.
Tiwari, Hemant K.
Chavan, Sameer
Smith, Jennifer A.
Smith, Nicholas L.
Kelly, Tanika N.
Hidalgo, Bertha
Cupples, L. Adrienne
Weeks, Daniel E.
Hawley, Nicola L.
Minster, Ryan L.
Deka, Ranjan
Naseri, Take T.
de las Fuentes, Lisa
Raffield, Laura M.
Morrison, Alanna C.
Vries, Paul S.
Ballantyne, Christie M.
Kenny, Eimear E.
Rich, Stephen S.
Whitsel, Eric A.
Cho, Michael H.
Shoemaker, M. Benjamin
Pace, Betty S.
Blangero, John
Palmer, Nicholette D.
Mitchell, Braxton D.
Shuldiner, Alan R.
Barnes, Kathleen C.
Redline, Susan
Kardia, Sharon L.R.
Abecasis, Gonçalo R.
Becker, Lewis C.
Heckbert, Susan R.
He, Jiang
Post, Wendy
Arnett, Donna K.
Vasan, Ramachandran S.
Darbar, Dawood
Weiss, Scott T.
McGarvey, Stephen T.
de Andrade, Mariza
Chen, Yii-Der Ida
Kaplan, Robert C.
Meyers, Deborah A.
Custer, Brian S.
Correa, Adolfo
Psaty, Bruce M.
Fornage, Myriam
Manson, JoAnn E.
Boerwinkle, Eric
Konkle, Barbara A.
Loos, Ruth J.F.
Rotter, Jerome I.
Silverman, Edwin K.
Kooperberg, Charles
Danesh, John
Samani, Nilesh J.
Jaiswal, Siddhartha
Libby, Peter
Ellinor, Patrick T.
Pankratz, Nathan
Ebert, Benjamin L.
Reiner, Alexander P.
Mathias, Rasika A.
Do, Ron
Natarajan, Pradeep
author_sort Nakao, Tetsushi
collection PubMed
description Human genetic studies support an inverse causal relationship between leukocyte telomere length (LTL) and coronary artery disease (CAD), but directionally mixed effects for LTL and diverse malignancies. Clonal hematopoiesis of indeterminate potential (CHIP), characterized by expansion of hematopoietic cells bearing leukemogenic mutations, predisposes both hematologic malignancy and CAD. TERT (which encodes telomerase reverse transcriptase) is the most significantly associated germline locus for CHIP in genome-wide association studies. Here, we investigated the relationship between CHIP, LTL, and CAD in the Trans-Omics for Precision Medicine (TOPMed) program (n = 63,302) and UK Biobank (n = 47,080). Bidirectional Mendelian randomization studies were consistent with longer genetically imputed LTL increasing propensity to develop CHIP, but CHIP then, in turn, hastens to shorten measured LTL (mLTL). We also demonstrated evidence of modest mediation between CHIP and CAD by mLTL. Our data promote an understanding of potential causal relationships across CHIP and LTL toward prevention of CAD.
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spelling pubmed-89860982022-04-19 Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential Nakao, Tetsushi Bick, Alexander G. Taub, Margaret A. Zekavat, Seyedeh M. Uddin, Md M. Niroula, Abhishek Carty, Cara L. Lane, John Honigberg, Michael C. Weinstock, Joshua S. Pampana, Akhil Gibson, Christopher J. Griffin, Gabriel K. Clarke, Shoa L. Bhattacharya, Romit Assimes, Themistocles L. Emery, Leslie S. Stilp, Adrienne M. Wong, Quenna Broome, Jai Laurie, Cecelia A. Khan, Alyna T. Smith, Albert V. Blackwell, Thomas W. Codd, Veryan Nelson, Christopher P. Yoneda, Zachary T. Peralta, Juan M. Bowden, Donald W. Irvin, Marguerite R. Boorgula, Meher Zhao, Wei Yanek, Lisa R. Wiggins, Kerri L. Hixson, James E. Gu, C. Charles Peloso, Gina M. Roden, Dan M. Reupena, Muagututi’a S. Hwu, Chii-Min DeMeo, Dawn L. North, Kari E. Kelly, Shannon Musani, Solomon K. Bis, Joshua C. Lloyd-Jones, Donald M. Johnsen, Jill M. Preuss, Michael Tracy, Russell P. Peyser, Patricia A. Qiao, Dandi Desai, Pinkal Curran, Joanne E. Freedman, Barry I. Tiwari, Hemant K. Chavan, Sameer Smith, Jennifer A. Smith, Nicholas L. Kelly, Tanika N. Hidalgo, Bertha Cupples, L. Adrienne Weeks, Daniel E. Hawley, Nicola L. Minster, Ryan L. Deka, Ranjan Naseri, Take T. de las Fuentes, Lisa Raffield, Laura M. Morrison, Alanna C. Vries, Paul S. Ballantyne, Christie M. Kenny, Eimear E. Rich, Stephen S. Whitsel, Eric A. Cho, Michael H. Shoemaker, M. Benjamin Pace, Betty S. Blangero, John Palmer, Nicholette D. Mitchell, Braxton D. Shuldiner, Alan R. Barnes, Kathleen C. Redline, Susan Kardia, Sharon L.R. Abecasis, Gonçalo R. Becker, Lewis C. Heckbert, Susan R. He, Jiang Post, Wendy Arnett, Donna K. Vasan, Ramachandran S. Darbar, Dawood Weiss, Scott T. McGarvey, Stephen T. de Andrade, Mariza Chen, Yii-Der Ida Kaplan, Robert C. Meyers, Deborah A. Custer, Brian S. Correa, Adolfo Psaty, Bruce M. Fornage, Myriam Manson, JoAnn E. Boerwinkle, Eric Konkle, Barbara A. Loos, Ruth J.F. Rotter, Jerome I. Silverman, Edwin K. Kooperberg, Charles Danesh, John Samani, Nilesh J. Jaiswal, Siddhartha Libby, Peter Ellinor, Patrick T. Pankratz, Nathan Ebert, Benjamin L. Reiner, Alexander P. Mathias, Rasika A. Do, Ron Natarajan, Pradeep Sci Adv Biomedicine and Life Sciences Human genetic studies support an inverse causal relationship between leukocyte telomere length (LTL) and coronary artery disease (CAD), but directionally mixed effects for LTL and diverse malignancies. Clonal hematopoiesis of indeterminate potential (CHIP), characterized by expansion of hematopoietic cells bearing leukemogenic mutations, predisposes both hematologic malignancy and CAD. TERT (which encodes telomerase reverse transcriptase) is the most significantly associated germline locus for CHIP in genome-wide association studies. Here, we investigated the relationship between CHIP, LTL, and CAD in the Trans-Omics for Precision Medicine (TOPMed) program (n = 63,302) and UK Biobank (n = 47,080). Bidirectional Mendelian randomization studies were consistent with longer genetically imputed LTL increasing propensity to develop CHIP, but CHIP then, in turn, hastens to shorten measured LTL (mLTL). We also demonstrated evidence of modest mediation between CHIP and CAD by mLTL. Our data promote an understanding of potential causal relationships across CHIP and LTL toward prevention of CAD. American Association for the Advancement of Science 2022-04-06 /pmc/articles/PMC8986098/ /pubmed/35385311 http://dx.doi.org/10.1126/sciadv.abl6579 Text en Copyright © 2022 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (https://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Biomedicine and Life Sciences
Nakao, Tetsushi
Bick, Alexander G.
Taub, Margaret A.
Zekavat, Seyedeh M.
Uddin, Md M.
Niroula, Abhishek
Carty, Cara L.
Lane, John
Honigberg, Michael C.
Weinstock, Joshua S.
Pampana, Akhil
Gibson, Christopher J.
Griffin, Gabriel K.
Clarke, Shoa L.
Bhattacharya, Romit
Assimes, Themistocles L.
Emery, Leslie S.
Stilp, Adrienne M.
Wong, Quenna
Broome, Jai
Laurie, Cecelia A.
Khan, Alyna T.
Smith, Albert V.
Blackwell, Thomas W.
Codd, Veryan
Nelson, Christopher P.
Yoneda, Zachary T.
Peralta, Juan M.
Bowden, Donald W.
Irvin, Marguerite R.
Boorgula, Meher
Zhao, Wei
Yanek, Lisa R.
Wiggins, Kerri L.
Hixson, James E.
Gu, C. Charles
Peloso, Gina M.
Roden, Dan M.
Reupena, Muagututi’a S.
Hwu, Chii-Min
DeMeo, Dawn L.
North, Kari E.
Kelly, Shannon
Musani, Solomon K.
Bis, Joshua C.
Lloyd-Jones, Donald M.
Johnsen, Jill M.
Preuss, Michael
Tracy, Russell P.
Peyser, Patricia A.
Qiao, Dandi
Desai, Pinkal
Curran, Joanne E.
Freedman, Barry I.
Tiwari, Hemant K.
Chavan, Sameer
Smith, Jennifer A.
Smith, Nicholas L.
Kelly, Tanika N.
Hidalgo, Bertha
Cupples, L. Adrienne
Weeks, Daniel E.
Hawley, Nicola L.
Minster, Ryan L.
Deka, Ranjan
Naseri, Take T.
de las Fuentes, Lisa
Raffield, Laura M.
Morrison, Alanna C.
Vries, Paul S.
Ballantyne, Christie M.
Kenny, Eimear E.
Rich, Stephen S.
Whitsel, Eric A.
Cho, Michael H.
Shoemaker, M. Benjamin
Pace, Betty S.
Blangero, John
Palmer, Nicholette D.
Mitchell, Braxton D.
Shuldiner, Alan R.
Barnes, Kathleen C.
Redline, Susan
Kardia, Sharon L.R.
Abecasis, Gonçalo R.
Becker, Lewis C.
Heckbert, Susan R.
He, Jiang
Post, Wendy
Arnett, Donna K.
Vasan, Ramachandran S.
Darbar, Dawood
Weiss, Scott T.
McGarvey, Stephen T.
de Andrade, Mariza
Chen, Yii-Der Ida
Kaplan, Robert C.
Meyers, Deborah A.
Custer, Brian S.
Correa, Adolfo
Psaty, Bruce M.
Fornage, Myriam
Manson, JoAnn E.
Boerwinkle, Eric
Konkle, Barbara A.
Loos, Ruth J.F.
Rotter, Jerome I.
Silverman, Edwin K.
Kooperberg, Charles
Danesh, John
Samani, Nilesh J.
Jaiswal, Siddhartha
Libby, Peter
Ellinor, Patrick T.
Pankratz, Nathan
Ebert, Benjamin L.
Reiner, Alexander P.
Mathias, Rasika A.
Do, Ron
Natarajan, Pradeep
Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential
title Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential
title_full Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential
title_fullStr Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential
title_full_unstemmed Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential
title_short Mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential
title_sort mendelian randomization supports bidirectional causality between telomere length and clonal hematopoiesis of indeterminate potential
topic Biomedicine and Life Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8986098/
https://www.ncbi.nlm.nih.gov/pubmed/35385311
http://dx.doi.org/10.1126/sciadv.abl6579
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AT hidalgobertha mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT cupplesladrienne mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT weeksdaniele mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT hawleynicolal mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT minsterryanl mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT dekaranjan mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT naseritaket mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT delasfuenteslisa mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT raffieldlauram mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT morrisonalannac mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT vriespauls mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT ballantynechristiem mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT kennyeimeare mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT richstephens mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT whitselerica mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT chomichaelh mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT shoemakermbenjamin mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT pacebettys mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT blangerojohn mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT palmernicholetted mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT mitchellbraxtond mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT shuldineralanr mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT barneskathleenc mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT redlinesusan mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT kardiasharonlr mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT abecasisgoncalor mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT beckerlewisc mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT heckbertsusanr mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT hejiang mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT postwendy mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT arnettdonnak mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT vasanramachandrans mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT darbardawood mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT weissscottt mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT mcgarveystephent mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT deandrademariza mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT chenyiiderida mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT kaplanrobertc mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT meyersdeboraha mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT custerbrians mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT correaadolfo mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT psatybrucem mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT fornagemyriam mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT mansonjoanne mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT boerwinkleeric mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT konklebarbaraa mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT loosruthjf mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT rotterjeromei mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT silvermanedwink mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT kooperbergcharles mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT daneshjohn mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT samaninileshj mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT jaiswalsiddhartha mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT libbypeter mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT ellinorpatrickt mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT pankratznathan mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT ebertbenjaminl mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT reineralexanderp mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT mathiasrasikaa mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT doron mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential
AT natarajanpradeep mendelianrandomizationsupportsbidirectionalcausalitybetweentelomerelengthandclonalhematopoiesisofindeterminatepotential