Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study

Receptor-like kinases (RLKs) are plant proteins that form signaling circuits to transduce information through the plant cell membrane to the nucleus and activate processes that direct growth, development, stress response, and disease resistance. Upon sensing various environmental stress stimuli, RLK...

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Main Authors: Alvy, Raghib Ishraq, Mubassir, M. H. M., Abdul Wahab, Mohd. Firdaus, Hamdan, Salehhuddin
Format: Article
Language:English
Published: Hindawi Limited 2023
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Online Access:http://eprints.utm.my/104880/1/MohdFirdaus2023_EffectsofD128NMutationonOsSERK2inXa21Mediated.pdf
http://eprints.utm.my/104880/
http://dx.doi.org/10.1155/2023/2749859
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spelling my.utm.1048802024-03-25T09:15:32Z http://eprints.utm.my/104880/ Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study Alvy, Raghib Ishraq Mubassir, M. H. M. Abdul Wahab, Mohd. Firdaus Hamdan, Salehhuddin QA Mathematics Receptor-like kinases (RLKs) are plant proteins that form signaling circuits to transduce information through the plant cell membrane to the nucleus and activate processes that direct growth, development, stress response, and disease resistance. Upon sensing various environmental stress stimuli, RLKs interact with specific targets and recruit several other proteins to initiate the defense mechanism. Among many RLK subfamilies, leucine-rich repeat RLKs (LRR-RLKs) are the largest. Xa21, a member of LRR-RLK, is a vital receptor protein in rice plants that binds with bacterial RaxX21-sY, whereas OsSERK2 is a somatic embryogenic receptor kinase (SERK) that acts as a coreceptor in this process. This study focuses on the effect of a substitution mutation of aspartate128 with asparagine128 (D128N) in OsSERK2 on the interdependent binding pattern of the Xa21, RaxX21-sY, and OsSERK2 D128N proteins. The in silico results showed that the D128N mutation in OsSERK2 can significantly change the interaction pattern of the critical residues of the OsSERK2 and affects its receptor-ligand (Xa21-RaxX21-sY) interaction in the complex. These findings are expected to significantly contribute to the study of the structural basis of Xa21-mediated immunity and the first layer of plant defense mechanisms, thereby aiding further research on these structures and their phenotypic implications. Hindawi Limited 2023 Article PeerReviewed application/pdf en http://eprints.utm.my/104880/1/MohdFirdaus2023_EffectsofD128NMutationonOsSERK2inXa21Mediated.pdf Alvy, Raghib Ishraq and Mubassir, M. H. M. and Abdul Wahab, Mohd. Firdaus and Hamdan, Salehhuddin (2023) Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study. Advances in Agriculture, 2023 (NA). pp. 1-9. ISSN 2356-654X http://dx.doi.org/10.1155/2023/2749859 DOI : 10.1155/2023/2749859
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic QA Mathematics
spellingShingle QA Mathematics
Alvy, Raghib Ishraq
Mubassir, M. H. M.
Abdul Wahab, Mohd. Firdaus
Hamdan, Salehhuddin
Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study
description Receptor-like kinases (RLKs) are plant proteins that form signaling circuits to transduce information through the plant cell membrane to the nucleus and activate processes that direct growth, development, stress response, and disease resistance. Upon sensing various environmental stress stimuli, RLKs interact with specific targets and recruit several other proteins to initiate the defense mechanism. Among many RLK subfamilies, leucine-rich repeat RLKs (LRR-RLKs) are the largest. Xa21, a member of LRR-RLK, is a vital receptor protein in rice plants that binds with bacterial RaxX21-sY, whereas OsSERK2 is a somatic embryogenic receptor kinase (SERK) that acts as a coreceptor in this process. This study focuses on the effect of a substitution mutation of aspartate128 with asparagine128 (D128N) in OsSERK2 on the interdependent binding pattern of the Xa21, RaxX21-sY, and OsSERK2 D128N proteins. The in silico results showed that the D128N mutation in OsSERK2 can significantly change the interaction pattern of the critical residues of the OsSERK2 and affects its receptor-ligand (Xa21-RaxX21-sY) interaction in the complex. These findings are expected to significantly contribute to the study of the structural basis of Xa21-mediated immunity and the first layer of plant defense mechanisms, thereby aiding further research on these structures and their phenotypic implications.
format Article
author Alvy, Raghib Ishraq
Mubassir, M. H. M.
Abdul Wahab, Mohd. Firdaus
Hamdan, Salehhuddin
author_facet Alvy, Raghib Ishraq
Mubassir, M. H. M.
Abdul Wahab, Mohd. Firdaus
Hamdan, Salehhuddin
author_sort Alvy, Raghib Ishraq
title Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study
title_short Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study
title_full Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study
title_fullStr Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study
title_full_unstemmed Effects of D128N mutation on OsSERK2 in Xa21-mediated immune complex: An in silico study
title_sort effects of d128n mutation on osserk2 in xa21-mediated immune complex: an in silico study
publisher Hindawi Limited
publishDate 2023
url http://eprints.utm.my/104880/1/MohdFirdaus2023_EffectsofD128NMutationonOsSERK2inXa21Mediated.pdf
http://eprints.utm.my/104880/
http://dx.doi.org/10.1155/2023/2749859
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