Kasi V S, Kuppuswamy D
Cardiology Division, Department of Medicine, Gazes Cardiac Research Institute, Medical University of South Carolina, Charleston 29425-2221, USA.
Mol Cell Biol. 1999 Oct;19(10):6858-71. doi: 10.1128/MCB.19.10.6858.
Src family kinases are implicated in cellular proliferation and transformation. Terminally differentiated myocytes have lost the ability to proliferate, indicating the existence of a down-regulatory mechanism(s) for these mitogenic kinases. Here we show that feline cardiomyocyte lysate contains thermostable components that inhibit c-Src kinase in vitro. This inhibitory activity, present predominantly in heart tissue, involves two components acting combinatorially. After purification by sequential chromatography, one component was identified by mass and nuclear magnetic resonance spectroscopies as 5'-AMP, while the other was identified by peptide sequencing as a small heat shock protein (sHSP). 5'-AMP and to a lesser extent 5'-ADP inhibit c-Src when combined with either HSP-27 or HSP-32. Other HSPs, including alphaB-crystallin, HSP-70, and HSP-90, did not exhibit this effect. The inhibition, observed preferentially on Src family kinases and independent of the Src tyrosine phosphorylation state, occurs via a direct interaction of the c-Src catalytic domain with the inhibitory components. Our study indicates that sHSPs increase the affinity of 5'-AMP for the c-Src ATP binding site, thereby facilitating the inhibition. In vivo, elevation of ATP levels in the cardiomyocytes results in the tyrosine phosphorylation of cellular proteins including c-Src at the activatory site, and this effect is blocked when the 5'-AMP concentration is raised. Thus, this study reveals a novel role for sHSPs and 5'-AMP in the regulation of Src family kinases, presumably for the maintenance of the terminally differentiated state.
Src家族激酶与细胞增殖和转化有关。终末分化的心肌细胞已失去增殖能力,这表明存在针对这些促有丝分裂激酶的下调机制。在此,我们表明猫心肌细胞裂解物含有在体外抑制c-Src激酶的热稳定成分。这种主要存在于心脏组织中的抑制活性涉及两种组合作用的成分。通过连续色谱法纯化后,一种成分通过质谱和核磁共振光谱鉴定为5'-AMP,而另一种通过肽测序鉴定为小分子热休克蛋白(sHSP)。当与HSP-27或HSP-32结合时,5'-AMP以及程度较轻的5'-ADP会抑制c-Src。其他热休克蛋白,包括αB-晶状体蛋白、HSP-70和HSP-90,未表现出这种作用。这种抑制作用优先在Src家族激酶上观察到,且与Src酪氨酸磷酸化状态无关,是通过c-Src催化结构域与抑制成分的直接相互作用发生的。我们的研究表明,小分子热休克蛋白增加了5'-AMP对c-Src ATP结合位点的亲和力,从而促进抑制作用。在体内,心肌细胞中ATP水平的升高导致包括c-Src在内的细胞蛋白在激活位点发生酪氨酸磷酸化,而当5'-AMP浓度升高时,这种作用会被阻断。因此,本研究揭示了小分子热休克蛋白和5'-AMP在调节Src家族激酶中的新作用,推测这对于维持终末分化状态具有重要意义。