Machiyama Hiroaki, Yamaguchi Tomoyuki, Watanabe Tomonobu M, Fujita Hideaki
WPI, Immunology Frontier Research Center, Osaka University, Suita, Osaka, Japan.
Quantitative Biology Center, Riken, Suita, Osaka, Japan.
FEBS Lett. 2017 Jul;591(13):1940-1946. doi: 10.1002/1873-3468.12696. Epub 2017 Jun 10.
The role of myristoylation in the localization and catalytic activity of Src at focal adhesions was investigated by live-cell imaging and site-directed mutagenesis. Although the majority of activated Src molecules are localized at focal adhesions, it is unclear how activated Src molecules are recruited to focal adhesions. Because Src is activated at the cell membrane, translocation of Src to cell membranes is considered to be essential for its recruitment to focal adhesions. Membrane-targeting-deficient Src mutant SrcG2A localizes at focal adhesions, indicating direct recruitment of Src from cytosol to focal adhesions. Furthermore, directly recruited Src molecules are shown to enhance paxillin dynamics at focal adhesions. These results reveal that the regulation of Src activation and translocation is more complex than previously suggested.
通过活细胞成像和定点诱变研究了肉豆蔻酰化在Src于粘着斑处的定位和催化活性中的作用。虽然大多数活化的Src分子定位于粘着斑,但尚不清楚活化的Src分子是如何被招募到粘着斑的。由于Src在细胞膜处被激活,因此Src向细胞膜的转位被认为是其被招募到粘着斑所必需的。膜靶向缺陷型Src突变体SrcG2A定位于粘着斑,表明Src可从细胞质直接招募到粘着斑。此外,直接招募的Src分子可增强粘着斑处桩蛋白的动力学。这些结果表明,Src激活和转位的调控比之前认为的更为复杂。