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Structural Evaluation and Conformational Dynamics of ZNF141(T474I) Mutation Provoking Postaxial Polydactyly Type A

Postaxial Polydactyly (PAP) is a congenital disorder of limb abnormalities characterized by posterior extra digits. Mutations in the N-terminal region of the Zinc finger protein 141 (ZNF141) gene were recently linked with PAP type A. Zinc finger proteins exhibit similarity at their N-terminal region...

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Autores principales: Ali, Yasir, Ahmad, Faisal, Ullah, Muhammad Farhat, Haq, Noor Ul, Haq, M. Inam Ul, Aziz, Abdul, Zouidi, Ferjeni, Khan, M. Ijaz, Eldin, Sayed M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9774408/
https://www.ncbi.nlm.nih.gov/pubmed/36550955
http://dx.doi.org/10.3390/bioengineering9120749
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author Ali, Yasir
Ahmad, Faisal
Ullah, Muhammad Farhat
Haq, Noor Ul
Haq, M. Inam Ul
Aziz, Abdul
Zouidi, Ferjeni
Khan, M. Ijaz
Eldin, Sayed M.
author_facet Ali, Yasir
Ahmad, Faisal
Ullah, Muhammad Farhat
Haq, Noor Ul
Haq, M. Inam Ul
Aziz, Abdul
Zouidi, Ferjeni
Khan, M. Ijaz
Eldin, Sayed M.
author_sort Ali, Yasir
collection PubMed
description Postaxial Polydactyly (PAP) is a congenital disorder of limb abnormalities characterized by posterior extra digits. Mutations in the N-terminal region of the Zinc finger protein 141 (ZNF141) gene were recently linked with PAP type A. Zinc finger proteins exhibit similarity at their N-terminal regions due to C2-H2 type Zinc finger domains, but their functional preferences vary significantly by the binding patterns of DNA. Methods: This study delineates the pathogenic association, miss-fold aggregation, and conformational paradigm of a missense variant (c.1420C > T; p.T474I) in ZNF141 gene segregating PAP through a molecular dynamics simulations approach. Results: In ZNF141 protein, helices play a crucial role by attaching three specific target DNA base pairs. In ZNF141(T474I) protein, H1, H3, and H6 helices attain more flexibility by acquiring loop conformation. The outward disposition of the proximal portion of H9-helix in mutant protein occurs due to the loss of prior beta-hairpins at the C terminal region of the C2-H2 domain. The loss of hydrogen bonds and exposure of hydrophobic residues to solvent and helices turning to loops cause dysfunction of ZNF141 protein. These significant changes in the stability and conformation of the mutant protein were validated using essential dynamics and cross-correlation maps, which revealed that upon point mutation, the overall motion of the proteins and the correlation between them were completely different, resulting in Postaxial polydactyly type A. Conclusions: This study provides molecular insights into the structural association of ZNF141 protein with PAP type A. Identification of active site residues and legends offers new therapeutic targets for ZNF141 protein. Further, it reiterates the functional importance of the last residue of a protein.
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spelling pubmed-97744082022-12-23 Structural Evaluation and Conformational Dynamics of ZNF141(T474I) Mutation Provoking Postaxial Polydactyly Type A Ali, Yasir Ahmad, Faisal Ullah, Muhammad Farhat Haq, Noor Ul Haq, M. Inam Ul Aziz, Abdul Zouidi, Ferjeni Khan, M. Ijaz Eldin, Sayed M. Bioengineering (Basel) Article Postaxial Polydactyly (PAP) is a congenital disorder of limb abnormalities characterized by posterior extra digits. Mutations in the N-terminal region of the Zinc finger protein 141 (ZNF141) gene were recently linked with PAP type A. Zinc finger proteins exhibit similarity at their N-terminal regions due to C2-H2 type Zinc finger domains, but their functional preferences vary significantly by the binding patterns of DNA. Methods: This study delineates the pathogenic association, miss-fold aggregation, and conformational paradigm of a missense variant (c.1420C > T; p.T474I) in ZNF141 gene segregating PAP through a molecular dynamics simulations approach. Results: In ZNF141 protein, helices play a crucial role by attaching three specific target DNA base pairs. In ZNF141(T474I) protein, H1, H3, and H6 helices attain more flexibility by acquiring loop conformation. The outward disposition of the proximal portion of H9-helix in mutant protein occurs due to the loss of prior beta-hairpins at the C terminal region of the C2-H2 domain. The loss of hydrogen bonds and exposure of hydrophobic residues to solvent and helices turning to loops cause dysfunction of ZNF141 protein. These significant changes in the stability and conformation of the mutant protein were validated using essential dynamics and cross-correlation maps, which revealed that upon point mutation, the overall motion of the proteins and the correlation between them were completely different, resulting in Postaxial polydactyly type A. Conclusions: This study provides molecular insights into the structural association of ZNF141 protein with PAP type A. Identification of active site residues and legends offers new therapeutic targets for ZNF141 protein. Further, it reiterates the functional importance of the last residue of a protein. MDPI 2022-12-01 /pmc/articles/PMC9774408/ /pubmed/36550955 http://dx.doi.org/10.3390/bioengineering9120749 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ali, Yasir
Ahmad, Faisal
Ullah, Muhammad Farhat
Haq, Noor Ul
Haq, M. Inam Ul
Aziz, Abdul
Zouidi, Ferjeni
Khan, M. Ijaz
Eldin, Sayed M.
Structural Evaluation and Conformational Dynamics of ZNF141(T474I) Mutation Provoking Postaxial Polydactyly Type A
title Structural Evaluation and Conformational Dynamics of ZNF141(T474I) Mutation Provoking Postaxial Polydactyly Type A
title_full Structural Evaluation and Conformational Dynamics of ZNF141(T474I) Mutation Provoking Postaxial Polydactyly Type A
title_fullStr Structural Evaluation and Conformational Dynamics of ZNF141(T474I) Mutation Provoking Postaxial Polydactyly Type A
title_full_unstemmed Structural Evaluation and Conformational Dynamics of ZNF141(T474I) Mutation Provoking Postaxial Polydactyly Type A
title_short Structural Evaluation and Conformational Dynamics of ZNF141(T474I) Mutation Provoking Postaxial Polydactyly Type A
title_sort structural evaluation and conformational dynamics of znf141(t474i) mutation provoking postaxial polydactyly type a
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9774408/
https://www.ncbi.nlm.nih.gov/pubmed/36550955
http://dx.doi.org/10.3390/bioengineering9120749
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