Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin

Integrins are a/B heterodimeric transmembrane receptors important for cell adhesion and migration. The cytosolic tails of integrin are essential for signalling and maintenance of its resting state. Integrin binding partners interact with the tails to control integrin activation, particularly the B t...

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Main Author: Woo, Jia Hern
Other Authors: Surajit Bhattacharyya
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2022
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Online Access:https://hdl.handle.net/10356/156793
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-1567932023-02-28T18:09:02Z Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin Woo, Jia Hern Surajit Bhattacharyya School of Biological Sciences Surajit@ntu.edu.sg Science::Biological sciences Integrins are a/B heterodimeric transmembrane receptors important for cell adhesion and migration. The cytosolic tails of integrin are essential for signalling and maintenance of its resting state. Integrin binding partners interact with the tails to control integrin activation, particularly the B tail. Filamin A is known to negatively regulate B2 integrins via its 21st domain (FLNa-Ig21). B2 integrins are important in leukocytes. Amongst the B2 integrins, aMB2 is a promiscuous receptor known to have multiple roles in immune response. While much is known about the interaction between the B2 cytosolic tail and FLNa-Ig21, its counterpart has yet to be characterized. Recent studies reported a novel interaction between aM cytosolic tail and FLNa-Ig21, and also a possible ternary complex involving both tails. However, atomic-resolution structure study was unsuccessful due to low-affinity interaction. We achieved stable binary complexes of FLNa-Ig21 with aM and b2 cytosolic tails which was amenable for structural analyses by NMR. Target proteins were recombinantly expressed, purified, and extensively characterized. We report that aM tail can interact with FLNa-Ig21, and a ternary complex of FLNa-Ig21 with both aM and B2 cytosolic tails was detected. Our study offers insights to structural properties of aM cytosolic tail when bound to FLNa-Ig21. Bachelor of Science in Biological Sciences 2022-04-24T13:56:41Z 2022-04-24T13:56:41Z 2022 Final Year Project (FYP) Woo, J. H. (2022). Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/156793 https://hdl.handle.net/10356/156793 en application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Biological sciences
spellingShingle Science::Biological sciences
Woo, Jia Hern
Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin
description Integrins are a/B heterodimeric transmembrane receptors important for cell adhesion and migration. The cytosolic tails of integrin are essential for signalling and maintenance of its resting state. Integrin binding partners interact with the tails to control integrin activation, particularly the B tail. Filamin A is known to negatively regulate B2 integrins via its 21st domain (FLNa-Ig21). B2 integrins are important in leukocytes. Amongst the B2 integrins, aMB2 is a promiscuous receptor known to have multiple roles in immune response. While much is known about the interaction between the B2 cytosolic tail and FLNa-Ig21, its counterpart has yet to be characterized. Recent studies reported a novel interaction between aM cytosolic tail and FLNa-Ig21, and also a possible ternary complex involving both tails. However, atomic-resolution structure study was unsuccessful due to low-affinity interaction. We achieved stable binary complexes of FLNa-Ig21 with aM and b2 cytosolic tails which was amenable for structural analyses by NMR. Target proteins were recombinantly expressed, purified, and extensively characterized. We report that aM tail can interact with FLNa-Ig21, and a ternary complex of FLNa-Ig21 with both aM and B2 cytosolic tails was detected. Our study offers insights to structural properties of aM cytosolic tail when bound to FLNa-Ig21.
author2 Surajit Bhattacharyya
author_facet Surajit Bhattacharyya
Woo, Jia Hern
format Final Year Project
author Woo, Jia Hern
author_sort Woo, Jia Hern
title Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin
title_short Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin
title_full Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin
title_fullStr Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin
title_full_unstemmed Characterization of binary and ternary complexes of filamin A domain FLNa-Ig21 with cytosolic tails of αMβ2 integrin
title_sort characterization of binary and ternary complexes of filamin a domain flna-ig21 with cytosolic tails of αmβ2 integrin
publisher Nanyang Technological University
publishDate 2022
url https://hdl.handle.net/10356/156793
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