Tanaka H, Maita T, Ojima T, Nishita K, Matsuda G
Department of Biochemistry, Nagasaki University School of Medicine.
J Biochem. 1988 Mar;103(3):572-80. doi: 10.1093/oxfordjournals.jbchem.a122308.
The amino acid sequence of the regulatory light chain of foot muscle myosin from surf-clam (Spisula sachalinensis) was determined by conventional methods. It was: xS-D-D-K-K-A-K-A-A-T-S-S-V-L-T-K-F-T-Q-N-Q-I-Q-E-M-K-E-A-F-T-M-I-D-Q-N-R -D-G-L- I-D-V-S-D-L-K-E-M-Y-S-N-L-G-T-A-P-Q-D-S-V-L-Q-A-M-V-K-E-A-P-Q-M-N-F-T-G- F-L-S-L- F-S-E-K-M-S-G-T-D-P-E-E-T-L-R-N-A-F-Q-M-F-D-S-D-N-T-G-Y-I-P-E-E-Y-M-K-D- L- L-E-N-M-G-D-N-F-S-K-D-E-V-R-Q-T-W-K-E-A-P-I-A-G-G-K-V-D-Y-N-A-F-V-S-K-I- K- G-K-E-Q-D-D-A. The alpha-amino group of the light chain was blocked, and a typical calcium binding structure was recognized at the 33rd to 44th residues, as in other myosin regulatory light chains. The sequences of regulatory light chains from various muscle myosins were arranged according to the well known four-domain structure, and structural homologies were obtained for each of the domains. Based on the homologies, the relationships between the structure, function, and molecular evolution were discussed.
采用常规方法测定了北太平洋巨蛤(Spisula sachalinensis)足部肌肉肌球蛋白调节轻链的氨基酸序列。序列如下:xS-D-D-K-K-A-K-A-A-T-S-S-V-L-T-K-F-T-Q-N-Q-I-Q-E-M-K-E-A-F-T-M-I-D-Q-N-R -D-G-L- I-D-V-S-D-L-K-E-M-Y-S-N-L-G-T-A-P-Q-D-S-V-L-Q-A-M-V-K-E-A-P-Q-M-N-F-T-G- F-L-S-L- F-S-E-K-M-S-G-T-D-P-E-E-T-L-R-N-A-F-Q-M-F-D-S-D-N-T-G-Y-I-P-E-E-Y-M-K-D- L- L-E-N-M-G-D-N-F-S-K-D-E-V-R-Q-T-W-K-E-A-P-I-A-G-G-K-V-D-Y-N-A-F-V-S-K-I- K- G-K-E-Q-D-D-A。轻链的α-氨基被封闭,并且如同其他肌球蛋白调节轻链一样,在第33至44个残基处识别出典型的钙结合结构。根据众所周知的四结构域结构排列了来自各种肌肉肌球蛋白的调节轻链序列,并获得了每个结构域的结构同源性。基于这些同源性,讨论了结构、功能和分子进化之间的关系。