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Myosin regulatory light chains are required to maintain the stability of myosin II and cellular integrity.

Authors :
Inju Park
Cecil Han
Sora Jin
Boyeon Lee
Heejin Choi
Jun Tae Kwon
Dongwook Kim
Jihye Kim
Ekaterina Lifirsu
Woo Jin Park
Zee Yong Park
Do Han Kim
Chunghee Cho
Source :
Biochemical Journal; Jan2011, Vol. 434 Issue 1, p171-180, 10p
Publication Year :
2011

Abstract

Myosin II is an actin-binding protein composed of MHC (myosin heavy chain) IIs, RLCs (regulatory light chains) and ELCs (essential light chains). Myosin II expressed in non-muscle tissues plays a central role in cell adhesion, migration and division. The regulation of myosin II activity is known to involve the phosphorylation of RLCs, which increases the Mg2+-ATPase activity of MHC IIs. However, less is known about the details of RLC–MHC II interaction or the loss-of-function phenotypes of non-muscle RLCs in mammalian cells. In the present paper, we investigate three highly conserved non-muscle RLCs of the mouse: MYL (myosin light chain) 12A (referred to as MYL12A), MYL12B and MYL9 (MYL12A/12B/9). Proteomic analysis showed that all three are associated with the MHCs MYH9 (NMHC IIA) and MYH10 (NMHC IIB), as well as the ELC MYL6, in NIH 3T3 fibroblasts. We found that knockdown of MYL12A/12B in NIH 3T3 cells results in striking changes in cell morphology and dynamics. Remarkably, the levels of MYH9, MYH10 and MYL6 were reduced significantly in knockdown fibroblasts. Comprehensive interaction analysis disclosed that MYL12A, MYL12B and MYL9 can all interact with a variety of MHC IIs in diverse cell and tissue types, but do so optimally with non-muscle types of MHC II. Taken together, our study provides direct evidence that normal levels of non-muscle RLCs are essential for maintaining the integrity of myosin II, and indicates that the RLCs are critical for cell structure and dynamics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02646021
Volume :
434
Issue :
1
Database :
Complementary Index
Journal :
Biochemical Journal
Publication Type :
Academic Journal
Accession number :
57698266
Full Text :
https://doi.org/10.1042/BJ20101473