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t‐Darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5

t‐Darpp (truncated isoform of dopamine‐ and cAMP‐regulated phosphoprotein) is a protein encoded by the PPP1R1B gene and is expressed in breast, colon, esophageal, gastric, and prostate cancers, as well as in normal adult brain striatal cells. Overexpression of t‐Darpp in cultured cells leads to incr...

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Autores principales: Momand, Jamil, Magdziarz, Patrycja, Feng, You, Jiang, Dianlu, Parga, Elizabeth, Celis, Arianna, Denny, Erin, Wang, Xiaoying, Phillips, Martin L., Monterroso, Estuardo, Kane, Susan E., Zhou, Feimeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5586343/
https://www.ncbi.nlm.nih.gov/pubmed/28904862
http://dx.doi.org/10.1002/2211-5463.12269
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author Momand, Jamil
Magdziarz, Patrycja
Feng, You
Jiang, Dianlu
Parga, Elizabeth
Celis, Arianna
Denny, Erin
Wang, Xiaoying
Phillips, Martin L.
Monterroso, Estuardo
Kane, Susan E.
Zhou, Feimeng
author_facet Momand, Jamil
Magdziarz, Patrycja
Feng, You
Jiang, Dianlu
Parga, Elizabeth
Celis, Arianna
Denny, Erin
Wang, Xiaoying
Phillips, Martin L.
Monterroso, Estuardo
Kane, Susan E.
Zhou, Feimeng
author_sort Momand, Jamil
collection PubMed
description t‐Darpp (truncated isoform of dopamine‐ and cAMP‐regulated phosphoprotein) is a protein encoded by the PPP1R1B gene and is expressed in breast, colon, esophageal, gastric, and prostate cancers, as well as in normal adult brain striatal cells. Overexpression of t‐Darpp in cultured cells leads to increased protein kinase A activity and increased phosphorylation of AKT (protein kinase B). In HER2+ breast cancer cells, t‐Darpp confers resistance to the chemotherapeutic agent trastuzumab. To shed light on t‐Darpp function, we studied its secondary structure, oligomerization status, metal‐binding properties, and phosphorylation by cyclin‐dependent kinases 1 and 5. t‐Darpp exhibits 12% alpha helix, 29% beta strand, 24% beta turn, and 35% random coil structures. It binds calcium, but not other metals commonly found in biological systems. The T39 site, critical for t‐Darpp activation of the AKT signaling pathway, is a substrate for phosphorylation by cyclin‐dependent kinase 1 and cyclin‐dependent kinase 5. Gel filtration chromatography, sedimentation equilibrium analysis, blue native gel electrophoresis, and glutaraldehyde‐mediated cross‐linking experiments demonstrate that the majority of t‐Darpp exists as a monomer, but forms low levels (< 3%) of hetero‐oligomers with its longer isoform Darpp‐32. t‐Darpp has a large Stokes radius of 4.4 nm relative to its mass of 19 kDa, indicating that it has an elongated structure.
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spelling pubmed-55863432017-09-13 t‐Darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5 Momand, Jamil Magdziarz, Patrycja Feng, You Jiang, Dianlu Parga, Elizabeth Celis, Arianna Denny, Erin Wang, Xiaoying Phillips, Martin L. Monterroso, Estuardo Kane, Susan E. Zhou, Feimeng FEBS Open Bio Research Articles t‐Darpp (truncated isoform of dopamine‐ and cAMP‐regulated phosphoprotein) is a protein encoded by the PPP1R1B gene and is expressed in breast, colon, esophageal, gastric, and prostate cancers, as well as in normal adult brain striatal cells. Overexpression of t‐Darpp in cultured cells leads to increased protein kinase A activity and increased phosphorylation of AKT (protein kinase B). In HER2+ breast cancer cells, t‐Darpp confers resistance to the chemotherapeutic agent trastuzumab. To shed light on t‐Darpp function, we studied its secondary structure, oligomerization status, metal‐binding properties, and phosphorylation by cyclin‐dependent kinases 1 and 5. t‐Darpp exhibits 12% alpha helix, 29% beta strand, 24% beta turn, and 35% random coil structures. It binds calcium, but not other metals commonly found in biological systems. The T39 site, critical for t‐Darpp activation of the AKT signaling pathway, is a substrate for phosphorylation by cyclin‐dependent kinase 1 and cyclin‐dependent kinase 5. Gel filtration chromatography, sedimentation equilibrium analysis, blue native gel electrophoresis, and glutaraldehyde‐mediated cross‐linking experiments demonstrate that the majority of t‐Darpp exists as a monomer, but forms low levels (< 3%) of hetero‐oligomers with its longer isoform Darpp‐32. t‐Darpp has a large Stokes radius of 4.4 nm relative to its mass of 19 kDa, indicating that it has an elongated structure. John Wiley and Sons Inc. 2017-08-29 /pmc/articles/PMC5586343/ /pubmed/28904862 http://dx.doi.org/10.1002/2211-5463.12269 Text en © 2017 The Authors. Published by FEBS Press and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Momand, Jamil
Magdziarz, Patrycja
Feng, You
Jiang, Dianlu
Parga, Elizabeth
Celis, Arianna
Denny, Erin
Wang, Xiaoying
Phillips, Martin L.
Monterroso, Estuardo
Kane, Susan E.
Zhou, Feimeng
t‐Darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5
title t‐Darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5
title_full t‐Darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5
title_fullStr t‐Darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5
title_full_unstemmed t‐Darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5
title_short t‐Darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5
title_sort t‐darpp is an elongated monomer that binds calcium and is phosphorylated by cyclin‐dependent kinases 1 and 5
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5586343/
https://www.ncbi.nlm.nih.gov/pubmed/28904862
http://dx.doi.org/10.1002/2211-5463.12269
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