From Zebrafish to humans: in silico comparative study of RAD50 sequences

DNA damage, particularly the occurrence of DNA double-strand breaks (DSBs), presents a significant hazard to the integrity and viability of cells. Improper repair of DSBs can result in chromosomal alterations, oncogenic changes, or cell demise. The MRE11-RAD50-NBS1 (MRN) complex plays a crucial role...

Full description

Saved in:
Bibliographic Details
Main Authors: Nahid Khalili, Ahmed Najm, Mahmood, Ibrahim, Douglas, Law, Chyan, Leong Ng, Ahmad Azfaralariff, Shazrul Fazry
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2024
Online Access:http://journalarticle.ukm.my/24768/1/MAE%2017.pdf
http://journalarticle.ukm.my/24768/
https://jms.mabjournal.com/index.php/mab/issue/view/63
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universiti Kebangsaan Malaysia
Language: English
id my-ukm.journal.24768
record_format eprints
spelling my-ukm.journal.247682025-01-23T07:37:16Z http://journalarticle.ukm.my/24768/ From Zebrafish to humans: in silico comparative study of RAD50 sequences Nahid Khalili, Ahmed Najm, Mahmood, Ibrahim Douglas, Law Chyan, Leong Ng Ahmad Azfaralariff, Shazrul Fazry, DNA damage, particularly the occurrence of DNA double-strand breaks (DSBs), presents a significant hazard to the integrity and viability of cells. Improper repair of DSBs can result in chromosomal alterations, oncogenic changes, or cell demise. The MRE11-RAD50-NBS1 (MRN) complex plays a crucial role in DNA repair and signaling under the Ataxia Telangiectasia Mutated (ATM) kinase regulation. In this study, we employed comprehensive computational techniques to analyze the structure of RAD50 in Danio rerio (Zebrafish), utilized as a model organism. Additionally, we conducted in silico assessments of RAD50 from both Zebrafish and humans, comparing their characteristics. The substantial sequence resemblance between DrRAD50 and HsRAD50 suggests that DrRAD50 could potentially serve as a valuable model for HsRAD50. However, it is important to acknowledge that sequence similarity alone does not necessarily imply functional equivalence. Further functional studies are needed to confirm the extent of their functional similarities. By examining the secondary and tertiary protein structures of RAD50, we observed a notable likeness between Zebrafish and Human RAD50 proteins. In silico analysis demonstrated that the sequence of RAD50 in zebrafish shares 70% similarity with the human RAD50 protein. Penerbit Universiti Kebangsaan Malaysia 2024 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/24768/1/MAE%2017.pdf Nahid Khalili, and Ahmed Najm, and Mahmood, Ibrahim and Douglas, Law and Chyan, Leong Ng and Ahmad Azfaralariff, and Shazrul Fazry, (2024) From Zebrafish to humans: in silico comparative study of RAD50 sequences. Malaysian Applied Biology, 53 (4). pp. 185-198. ISSN 0126-8643 https://jms.mabjournal.com/index.php/mab/issue/view/63
institution Universiti Kebangsaan Malaysia
building Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description DNA damage, particularly the occurrence of DNA double-strand breaks (DSBs), presents a significant hazard to the integrity and viability of cells. Improper repair of DSBs can result in chromosomal alterations, oncogenic changes, or cell demise. The MRE11-RAD50-NBS1 (MRN) complex plays a crucial role in DNA repair and signaling under the Ataxia Telangiectasia Mutated (ATM) kinase regulation. In this study, we employed comprehensive computational techniques to analyze the structure of RAD50 in Danio rerio (Zebrafish), utilized as a model organism. Additionally, we conducted in silico assessments of RAD50 from both Zebrafish and humans, comparing their characteristics. The substantial sequence resemblance between DrRAD50 and HsRAD50 suggests that DrRAD50 could potentially serve as a valuable model for HsRAD50. However, it is important to acknowledge that sequence similarity alone does not necessarily imply functional equivalence. Further functional studies are needed to confirm the extent of their functional similarities. By examining the secondary and tertiary protein structures of RAD50, we observed a notable likeness between Zebrafish and Human RAD50 proteins. In silico analysis demonstrated that the sequence of RAD50 in zebrafish shares 70% similarity with the human RAD50 protein.
format Article
author Nahid Khalili,
Ahmed Najm,
Mahmood, Ibrahim
Douglas, Law
Chyan, Leong Ng
Ahmad Azfaralariff,
Shazrul Fazry,
spellingShingle Nahid Khalili,
Ahmed Najm,
Mahmood, Ibrahim
Douglas, Law
Chyan, Leong Ng
Ahmad Azfaralariff,
Shazrul Fazry,
From Zebrafish to humans: in silico comparative study of RAD50 sequences
author_facet Nahid Khalili,
Ahmed Najm,
Mahmood, Ibrahim
Douglas, Law
Chyan, Leong Ng
Ahmad Azfaralariff,
Shazrul Fazry,
author_sort Nahid Khalili,
title From Zebrafish to humans: in silico comparative study of RAD50 sequences
title_short From Zebrafish to humans: in silico comparative study of RAD50 sequences
title_full From Zebrafish to humans: in silico comparative study of RAD50 sequences
title_fullStr From Zebrafish to humans: in silico comparative study of RAD50 sequences
title_full_unstemmed From Zebrafish to humans: in silico comparative study of RAD50 sequences
title_sort from zebrafish to humans: in silico comparative study of rad50 sequences
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2024
url http://journalarticle.ukm.my/24768/1/MAE%2017.pdf
http://journalarticle.ukm.my/24768/
https://jms.mabjournal.com/index.php/mab/issue/view/63
_version_ 1823091754667081728