Fukami Y, Sato K, Ikeda K, Kamisango K, Koizumi K, Matsuno T
Laboratory of Molecular Biology, Kobe University, Japan.
J Biol Chem. 1993 Jan 15;268(2):1132-40.
In the previous study (Sato, K., Miki, S., Tachibana, H., Hayashi, F., Akiyama, T., and Fukami, Y. (1990) Biochem. Biophys. Res. Commun. 171, 1152-1159), we found a synthetic peptide, termed peptide A, that inhibited the kinase activity of p60v-src. The peptide A sequence corresponds to residues 137 to 157 of p60v-src which are included in the amino-terminal portion of the src homology 2 domain. In this study, we attempted to specify the inhibitory sequence in this domain and to identify its target site. The most potent peptide A derivative was one that corresponds to residues 140 through 157. The target site of peptide A was assumed to reside in the autophosphorylation site of p60v-src, since synthetic peptides containing the sequence Phe424-Pro-Ile-Lys-Trp428 which is present downstream of the autophosphorylated Tyr416 partially counteracted the inhibitory effect of peptide A. An antibody was prepared against one of such target peptides, termed pepY. Cross-linking experiments showed that 125I-labeled peptide A could bind to p60v-src blotted on a membrane, and the binding was blocked by the anti-pepY antibody but not by other anti-p60v-src antibodies. Conversely, immunoblotting of p60v-src with anti-pepY antibody was blocked by the cross-linking of peptide A to p60v-src. To our surprise, anti-pepY antibody did not affect the p60v-src activity. Furthermore, p60c-src was activated 2- to 6-fold by this antibody. These results suggest that the pepY region in the catalytic domain of p60v-src or of p60c-src is not essential for the catalytic activity but rather is involved in the negative regulation of the kinase activity of p60c-src.
在先前的研究中(佐藤,K.,三木,S.,立花,H.,林,F.,秋山,T.,深见,Y.(1990年)《生物化学与生物物理研究通讯》171,1152 - 1159),我们发现了一种合成肽,称为肽A,它能抑制p60v - src的激酶活性。肽A序列对应于p60v - src的137至157位残基,这些残基包含在src同源2结构域的氨基末端部分。在本研究中,我们试图确定该结构域中的抑制序列并鉴定其靶位点。最有效的肽A衍生物是对应于140至157位残基的那种。肽A的靶位点被认为位于p60v - src的自身磷酸化位点,因为含有位于自身磷酸化的Tyr416下游的序列Phe424 - Pro - Ile - Lys - Trp428的合成肽部分抵消了肽A的抑制作用。针对其中一种这样的靶肽,称为pepY,制备了抗体。交联实验表明,125I标记的肽A能与印迹在膜上的p60v - src结合,并且这种结合被抗pepY抗体阻断,而不被其他抗p60v - src抗体阻断。相反,用抗pepY抗体对p60v - src进行免疫印迹被肽A与p60v - src的交联所阻断。令我们惊讶的是,抗pepY抗体并不影响p60v - src的活性。此外,该抗体使p60c - src的活性激活了2至6倍。这些结果表明,p60v - src或p60c - src催化结构域中的pepY区域对于催化活性并非必不可少,而是参与了p60c - src激酶活性的负调控。