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Identification of C. elegans ASNA-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control

ASNA1 plays an essential role in cisplatin chemotherapy response, type 2 diabetes, and heart disease. It is also an important biomarker in the treatment response of many diseases. Biochemically, ASNA1 has two mutually exclusive redox-modulated roles: a tail-anchored protein (TAP) targeting function...

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Autores principales: Raj, Dorota, Podraza-Farhanieh, Agnieszka, Gallego, Pablo, Kao, Gautam, Naredi, Peter
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9803280/
https://www.ncbi.nlm.nih.gov/pubmed/36480541
http://dx.doi.org/10.1371/journal.pgen.1010538
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author Raj, Dorota
Podraza-Farhanieh, Agnieszka
Gallego, Pablo
Kao, Gautam
Naredi, Peter
author_facet Raj, Dorota
Podraza-Farhanieh, Agnieszka
Gallego, Pablo
Kao, Gautam
Naredi, Peter
author_sort Raj, Dorota
collection PubMed
description ASNA1 plays an essential role in cisplatin chemotherapy response, type 2 diabetes, and heart disease. It is also an important biomarker in the treatment response of many diseases. Biochemically, ASNA1 has two mutually exclusive redox-modulated roles: a tail-anchored protein (TAP) targeting function in the reduced state and a holdase/chaperone function in the oxidized state. Assigning biochemical roles of mammalian ASNA1 to biomedical functions is crucial for successful therapy development. Our previous work showed the relevance of the C. elegans ASNA-1 homolog in modeling cisplatin response and insulin secretion. Here we analyzed two-point mutants in highly conserved residues in C. elegans ASNA-1 and determined their importance in separating the cisplatin response function from its roles in insulin secretion. asna-1(ΔHis164) and asna-1(A63V) point mutants, which both preferentially exist in the oxidized state, displayed cisplatin sensitivity phenotype as well as TAP insertion defect but not an insulin secretion defect. Further, using targeted depletion we analyzed the tissue requirements of asna-1 for C. elegans growth and development. Somatic depletion of ASNA-1 as well as simultaneous depletion of ASNA-1 in neurons and intestines resulted in an L1 arrest. We concluded that, targeting single residues in ASNA-1 affecting Switch I/Switch II domain function, in comparison to complete knockdown counteracted cisplatin resistance without jeopardizing other important biological functions. Taken together, our study shows that effects on health caused by ASNA1 mutations can have different biochemical bases.
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spelling pubmed-98032802022-12-31 Identification of C. elegans ASNA-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control Raj, Dorota Podraza-Farhanieh, Agnieszka Gallego, Pablo Kao, Gautam Naredi, Peter PLoS Genet Research Article ASNA1 plays an essential role in cisplatin chemotherapy response, type 2 diabetes, and heart disease. It is also an important biomarker in the treatment response of many diseases. Biochemically, ASNA1 has two mutually exclusive redox-modulated roles: a tail-anchored protein (TAP) targeting function in the reduced state and a holdase/chaperone function in the oxidized state. Assigning biochemical roles of mammalian ASNA1 to biomedical functions is crucial for successful therapy development. Our previous work showed the relevance of the C. elegans ASNA-1 homolog in modeling cisplatin response and insulin secretion. Here we analyzed two-point mutants in highly conserved residues in C. elegans ASNA-1 and determined their importance in separating the cisplatin response function from its roles in insulin secretion. asna-1(ΔHis164) and asna-1(A63V) point mutants, which both preferentially exist in the oxidized state, displayed cisplatin sensitivity phenotype as well as TAP insertion defect but not an insulin secretion defect. Further, using targeted depletion we analyzed the tissue requirements of asna-1 for C. elegans growth and development. Somatic depletion of ASNA-1 as well as simultaneous depletion of ASNA-1 in neurons and intestines resulted in an L1 arrest. We concluded that, targeting single residues in ASNA-1 affecting Switch I/Switch II domain function, in comparison to complete knockdown counteracted cisplatin resistance without jeopardizing other important biological functions. Taken together, our study shows that effects on health caused by ASNA1 mutations can have different biochemical bases. Public Library of Science 2022-12-08 /pmc/articles/PMC9803280/ /pubmed/36480541 http://dx.doi.org/10.1371/journal.pgen.1010538 Text en © 2022 Raj et al 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 use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Raj, Dorota
Podraza-Farhanieh, Agnieszka
Gallego, Pablo
Kao, Gautam
Naredi, Peter
Identification of C. elegans ASNA-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control
title Identification of C. elegans ASNA-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control
title_full Identification of C. elegans ASNA-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control
title_fullStr Identification of C. elegans ASNA-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control
title_full_unstemmed Identification of C. elegans ASNA-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control
title_short Identification of C. elegans ASNA-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control
title_sort identification of c. elegans asna-1 domains and tissue requirements that differentially influence platinum sensitivity and growth control
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9803280/
https://www.ncbi.nlm.nih.gov/pubmed/36480541
http://dx.doi.org/10.1371/journal.pgen.1010538
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