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TPP1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis

Telomerase catalyzes chromosome end replication in stem cells and other long-lived cells. Mutations in telomerase or telomere-related genes result in diseases known as telomeropathies. Telomerase is recruited to chromosome ends by the ACD/TPP1 protein (TPP1 hereafter), a component of the shelterin c...

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Autores principales: Grill, Sherilyn, Padmanaban, Shilpa, Friedman, Ann, Perkey, Eric, Allen, Frederick, Tesmer, Valerie M., Chase, Jennifer, Khoriaty, Rami, Keegan, Catherine E., Maillard, Ivan, Nandakumar, Jayakrishnan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262337/
https://www.ncbi.nlm.nih.gov/pubmed/33822766
http://dx.doi.org/10.1172/jci.insight.138059
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author Grill, Sherilyn
Padmanaban, Shilpa
Friedman, Ann
Perkey, Eric
Allen, Frederick
Tesmer, Valerie M.
Chase, Jennifer
Khoriaty, Rami
Keegan, Catherine E.
Maillard, Ivan
Nandakumar, Jayakrishnan
author_facet Grill, Sherilyn
Padmanaban, Shilpa
Friedman, Ann
Perkey, Eric
Allen, Frederick
Tesmer, Valerie M.
Chase, Jennifer
Khoriaty, Rami
Keegan, Catherine E.
Maillard, Ivan
Nandakumar, Jayakrishnan
author_sort Grill, Sherilyn
collection PubMed
description Telomerase catalyzes chromosome end replication in stem cells and other long-lived cells. Mutations in telomerase or telomere-related genes result in diseases known as telomeropathies. Telomerase is recruited to chromosome ends by the ACD/TPP1 protein (TPP1 hereafter), a component of the shelterin complex that protects chromosome ends from unwanted end joining. TPP1 facilitates end protection by binding shelterin proteins POT1 and TIN2. TPP1 variants have been associated with telomeropathies but remain poorly characterized in vivo. Disease variants and mutagenesis scans provide efficient avenues to interrogate the distinct physiological roles of TPP1. Here, we conduct mutagenesis in the TIN2- and POT1-binding domains of TPP1 to discover mutations that dissect TPP1’s functions. Our results extend current structural data to reveal that the TPP1-TIN2 interface is more extensive than previously thought and highlight the robustness of the POT1-TPP1 interface. Introduction of separation-of-function mutants alongside known TPP1 telomeropathy mutations in mouse hematopoietic stem cells (mHSCs) lacking endogenous TPP1 demonstrated a clear phenotypic demarcation. TIN2- and POT1-binding mutants were unable to rescue mHSC failure resulting from end deprotection. In contrast, TPP1 telomeropathy mutations sustained mHSC viability, consistent with their selectively impacting end replication. These results highlight the power of scanning mutagenesis in revealing structural interfaces and dissecting multifunctional genes.
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spelling pubmed-82623372021-07-13 TPP1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis Grill, Sherilyn Padmanaban, Shilpa Friedman, Ann Perkey, Eric Allen, Frederick Tesmer, Valerie M. Chase, Jennifer Khoriaty, Rami Keegan, Catherine E. Maillard, Ivan Nandakumar, Jayakrishnan JCI Insight Research Article Telomerase catalyzes chromosome end replication in stem cells and other long-lived cells. Mutations in telomerase or telomere-related genes result in diseases known as telomeropathies. Telomerase is recruited to chromosome ends by the ACD/TPP1 protein (TPP1 hereafter), a component of the shelterin complex that protects chromosome ends from unwanted end joining. TPP1 facilitates end protection by binding shelterin proteins POT1 and TIN2. TPP1 variants have been associated with telomeropathies but remain poorly characterized in vivo. Disease variants and mutagenesis scans provide efficient avenues to interrogate the distinct physiological roles of TPP1. Here, we conduct mutagenesis in the TIN2- and POT1-binding domains of TPP1 to discover mutations that dissect TPP1’s functions. Our results extend current structural data to reveal that the TPP1-TIN2 interface is more extensive than previously thought and highlight the robustness of the POT1-TPP1 interface. Introduction of separation-of-function mutants alongside known TPP1 telomeropathy mutations in mouse hematopoietic stem cells (mHSCs) lacking endogenous TPP1 demonstrated a clear phenotypic demarcation. TIN2- and POT1-binding mutants were unable to rescue mHSC failure resulting from end deprotection. In contrast, TPP1 telomeropathy mutations sustained mHSC viability, consistent with their selectively impacting end replication. These results highlight the power of scanning mutagenesis in revealing structural interfaces and dissecting multifunctional genes. American Society for Clinical Investigation 2021-05-10 /pmc/articles/PMC8262337/ /pubmed/33822766 http://dx.doi.org/10.1172/jci.insight.138059 Text en © 2021 Grill et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Grill, Sherilyn
Padmanaban, Shilpa
Friedman, Ann
Perkey, Eric
Allen, Frederick
Tesmer, Valerie M.
Chase, Jennifer
Khoriaty, Rami
Keegan, Catherine E.
Maillard, Ivan
Nandakumar, Jayakrishnan
TPP1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis
title TPP1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis
title_full TPP1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis
title_fullStr TPP1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis
title_full_unstemmed TPP1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis
title_short TPP1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis
title_sort tpp1 mutagenesis screens unravel shelterin interfaces and functions in hematopoiesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262337/
https://www.ncbi.nlm.nih.gov/pubmed/33822766
http://dx.doi.org/10.1172/jci.insight.138059
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