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Novel pathological variants of NHP2 affect N-terminal domain flexibility, protein stability, H/ACA Ribonucleoprotein (RNP) complex formation and telomerase activity

Telomere biology disorders (TBDs) are characterized by short telomeres, premature aging, bone marrow failure and cancer predisposition. Germline mutations in NHP2, encoding for one component of the telomerase cofactor H/ACA RNA binding complex together with Dyskerin, NOP10 and GAR1, have been previo...

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Autores principales: Maliński, Bartosz, Vertemara, Jacopo, Faustini, Elena, Ladenvall, Claes, Norberg, Anna, Zhang, Yuming, von Castelmur, Eleonore, Baliakas, Panagiotis, Tisi, Renata, Cammenga, Jörg, Lottersberger, Francisca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10508036/
https://www.ncbi.nlm.nih.gov/pubmed/37440454
http://dx.doi.org/10.1093/hmg/ddad114
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author Maliński, Bartosz
Vertemara, Jacopo
Faustini, Elena
Ladenvall, Claes
Norberg, Anna
Zhang, Yuming
von Castelmur, Eleonore
Baliakas, Panagiotis
Tisi, Renata
Cammenga, Jörg
Lottersberger, Francisca
author_facet Maliński, Bartosz
Vertemara, Jacopo
Faustini, Elena
Ladenvall, Claes
Norberg, Anna
Zhang, Yuming
von Castelmur, Eleonore
Baliakas, Panagiotis
Tisi, Renata
Cammenga, Jörg
Lottersberger, Francisca
author_sort Maliński, Bartosz
collection PubMed
description Telomere biology disorders (TBDs) are characterized by short telomeres, premature aging, bone marrow failure and cancer predisposition. Germline mutations in NHP2, encoding for one component of the telomerase cofactor H/ACA RNA binding complex together with Dyskerin, NOP10 and GAR1, have been previously reported in rare cases of TBDs. Here, we report two novel NHP2 variants (NHP2-A39T and NHP2-T44M) identified in a compound heterozygous patient affected by premature aging, bone marrow failure/myelodysplastic syndrome and gastric cancer. Although still able to support cell viability, both variants reduce the levels of hTR, the telomerase RNA component, and telomerase activity, expanding the panel of NHP2 pathological variants. Furthermore, both variants fail to be incorporated in the H/ACA RNA binding complex when in competition with wild-type endogenous NHP2, and the lack of incorporation causes their drastic proteasomal degradation. By RoseTTAFold prediction followed by molecular dynamics simulations, we reveal a dramatic distortion of residues 33–41, which normally position on top of the NHP2 core, as the main defect of NHP2-A39T, and high flexibility and the misplacement of the N-terminal region (residues 1–24) in NHP2-T44M and, to a lower degree, in NHP2-A39T. Because deletion of amino acids 2–24 causes a reduction in NHP2 levels only in the presence of wild-type NHP2, while deletion of amino acids 2–38 completely disrupts NHP2 stability, we propose that the two variants are mis-incorporated into the H/ACA binding complex due to the altered dynamics of the first 23 amino acids and/or the distortion of the residues 25–41 loop.
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spelling pubmed-105080362023-09-20 Novel pathological variants of NHP2 affect N-terminal domain flexibility, protein stability, H/ACA Ribonucleoprotein (RNP) complex formation and telomerase activity Maliński, Bartosz Vertemara, Jacopo Faustini, Elena Ladenvall, Claes Norberg, Anna Zhang, Yuming von Castelmur, Eleonore Baliakas, Panagiotis Tisi, Renata Cammenga, Jörg Lottersberger, Francisca Hum Mol Genet Original Article Telomere biology disorders (TBDs) are characterized by short telomeres, premature aging, bone marrow failure and cancer predisposition. Germline mutations in NHP2, encoding for one component of the telomerase cofactor H/ACA RNA binding complex together with Dyskerin, NOP10 and GAR1, have been previously reported in rare cases of TBDs. Here, we report two novel NHP2 variants (NHP2-A39T and NHP2-T44M) identified in a compound heterozygous patient affected by premature aging, bone marrow failure/myelodysplastic syndrome and gastric cancer. Although still able to support cell viability, both variants reduce the levels of hTR, the telomerase RNA component, and telomerase activity, expanding the panel of NHP2 pathological variants. Furthermore, both variants fail to be incorporated in the H/ACA RNA binding complex when in competition with wild-type endogenous NHP2, and the lack of incorporation causes their drastic proteasomal degradation. By RoseTTAFold prediction followed by molecular dynamics simulations, we reveal a dramatic distortion of residues 33–41, which normally position on top of the NHP2 core, as the main defect of NHP2-A39T, and high flexibility and the misplacement of the N-terminal region (residues 1–24) in NHP2-T44M and, to a lower degree, in NHP2-A39T. Because deletion of amino acids 2–24 causes a reduction in NHP2 levels only in the presence of wild-type NHP2, while deletion of amino acids 2–38 completely disrupts NHP2 stability, we propose that the two variants are mis-incorporated into the H/ACA binding complex due to the altered dynamics of the first 23 amino acids and/or the distortion of the residues 25–41 loop. Oxford University Press 2023-07-13 /pmc/articles/PMC10508036/ /pubmed/37440454 http://dx.doi.org/10.1093/hmg/ddad114 Text en © The Author(s) 2023. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Maliński, Bartosz
Vertemara, Jacopo
Faustini, Elena
Ladenvall, Claes
Norberg, Anna
Zhang, Yuming
von Castelmur, Eleonore
Baliakas, Panagiotis
Tisi, Renata
Cammenga, Jörg
Lottersberger, Francisca
Novel pathological variants of NHP2 affect N-terminal domain flexibility, protein stability, H/ACA Ribonucleoprotein (RNP) complex formation and telomerase activity
title Novel pathological variants of NHP2 affect N-terminal domain flexibility, protein stability, H/ACA Ribonucleoprotein (RNP) complex formation and telomerase activity
title_full Novel pathological variants of NHP2 affect N-terminal domain flexibility, protein stability, H/ACA Ribonucleoprotein (RNP) complex formation and telomerase activity
title_fullStr Novel pathological variants of NHP2 affect N-terminal domain flexibility, protein stability, H/ACA Ribonucleoprotein (RNP) complex formation and telomerase activity
title_full_unstemmed Novel pathological variants of NHP2 affect N-terminal domain flexibility, protein stability, H/ACA Ribonucleoprotein (RNP) complex formation and telomerase activity
title_short Novel pathological variants of NHP2 affect N-terminal domain flexibility, protein stability, H/ACA Ribonucleoprotein (RNP) complex formation and telomerase activity
title_sort novel pathological variants of nhp2 affect n-terminal domain flexibility, protein stability, h/aca ribonucleoprotein (rnp) complex formation and telomerase activity
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10508036/
https://www.ncbi.nlm.nih.gov/pubmed/37440454
http://dx.doi.org/10.1093/hmg/ddad114
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