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TAGLN2 polymerizes G-actin in a low ionic state but blocks Arp2/3-nucleated actin branching in physiological conditions

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Abstract
TAGLN is an actin-binding protein family that comprises three isoforms with theorized roles in smooth muscle differentiation, tumour development, lymphocyte activation, and brain chemistry. However, their fundamental characteristics in regulation of the actin-based cytoskeleton are not fully understood. Here we show that TAGLN2 (including TAGLN1 and TAGLN3) extensively nucleates G-actin polymerization under low-salt conditions, where polymerization would be completely suppressed. The calponin homology domain and actin-binding loop are essential to mechanically connect two adjacent G-actins, thereby mediating multimeric interactions. However, TAGLN2 blocked the Arp2/3 complex binding to actin filaments under physiological salt conditions, thereby inhibiting branched actin nucleation. In HeLa and T cells, TAGLN2 enhanced filopodium-like membrane protrusion. Collectively, the dual functional nature of TAGLN2-G-actin polymerization and Arp2/3 complex inhibition-may account for the mechanisms of filopodia development at the edge of Arp2/3-rich lamellipodia in various cell types.
Author(s)
Kim, Hye-RanKwon, Min-SungLee, SangminMun, YevinLee, Kyung-SikKim, Chang-HyunNa, Bo-RaKim, Bit Na RaePiragyte, IndreLee, Hyun-SuJun, YoungsooJin, Mi SunHyun, Young-MinJung, Hyun SukMun, Ji YoungJun, Chang-Duk
Issued Date
2018-12
Type
Article
DOI
10.1038/s41598-018-23816-2
URI
https://scholar.gist.ac.kr/handle/local/12991
Publisher
Nature Publishing Group
Citation
Scientific Reports, v.8, no.1, pp.1 - 15
ISSN
2045-2322
Appears in Collections:
Department of Life Sciences > 1. Journal Articles
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