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pp60c-src磷酸化状态与酪氨酸激酶活性的相关性:如果Y419被磷酸化,分子内pY530-SH2复合物保留显著活性。

Correlation of the phosphorylation states of pp60c-src with tyrosine kinase activity: the intramolecular pY530-SH2 complex retains significant activity if Y419 is phosphorylated.

作者信息

Boerner R J, Kassel D B, Barker S C, Ellis B, DeLacy P, Knight W B

机构信息

Department of Biochemistry, Glaxo Wellcome Inc., Research Triangle Park, North Carolina 27709, USA.

出版信息

Biochemistry. 1996 Jul 23;35(29):9519-25. doi: 10.1021/bi960248u.

Abstract

Rapid digestion of pp60c-src tyrosine kinase (src TK) in combination with electrospray ionization mass spectrometry enabled the determination of the time course for autophosphorylation of three tyrosine sites (Y338, Y419, and Y530) and a correlation with src TK activity. A form of src TK was purified from baculovirus-infected cells which contains only Y338 partially phosphorylated. Incubation with MgATP increases the phosphorylation of all three sites. The autophosphorylation and dephosphorylation of Y419 are directly correlated with the level of src TK activity. The role of Y338 phosphorylation is unknown. Conditions resulting in complete autophosphorylation of Y530 were identified by electrospray ionization mass spectrometry. Surface plasmon resonance detection and size exclusion chromatography provide direct evidence for an intramolecular pY530-SH2 complex, supporting previous models [Matsuda, M., Mayer, B.J., Fukui, Y., & Hanafusa, H. (1990) Science 248, 1537-1539]. Contrary to these models, when the enzyme is fully phosphorylated on Y530, phosphorylated on Y419, and present only as the intramolecular pY530-SH2 complex, 20% of the kinase activity is retained. In addition, the k(m)'s for substrates are unaffected. Disruption of the pY530-SH2 interaction and activation of kinase activity by a high-affinity SH2 ligand yield a Kactivation which is 200-fold larger than the Kd for ligand binding to the uncomplexed src SH2 domain. These data suggest a Keq of 200 (unitless) for the intramolecular association of pY530 with the SH2 domain. We propose that the pY530-SH2 interaction modulates signal transduction by down-regulating src TK activity 5-fold, and perhaps more importantly by inhibiting protein-protein interactions with the SH2 domain. These results have significant implications relative to the development of SH2 ligands as therapeutics to control aberrant signal transduction. These ligands will be 200-fold less effective at inhibiting protein-protein interactions versus down-regulated src TK than versus activated src TK. This should minimize activation of src TK activity in normal cells and lead to an increased therapeutic index.

摘要

将pp60c-src酪氨酸激酶(src TK)的快速消化与电喷雾电离质谱联用,能够确定三个酪氨酸位点(Y338、Y419和Y530)的自磷酸化时间进程以及与src TK活性的相关性。从杆状病毒感染的细胞中纯化出一种src TK形式,其仅Y338部分磷酸化。与MgATP一起温育会增加所有三个位点的磷酸化。Y419的自磷酸化和去磷酸化与src TK活性水平直接相关。Y338磷酸化的作用尚不清楚。通过电喷雾电离质谱确定了导致Y530完全自磷酸化的条件。表面等离子体共振检测和尺寸排阻色谱为分子内pY530-SH2复合物提供了直接证据,支持先前的模型[松田,M.,迈耶,B.J.,福井,Y.,& 花房,H.(1990年)《科学》248,1537 - 1539]。与这些模型相反,当该酶在Y530上完全磷酸化、在Y419上磷酸化且仅以分子内pY530-SH2复合物形式存在时,仍保留20%的激酶活性。此外,底物的米氏常数不受影响。高亲和力SH2配体破坏pY530-SH2相互作用并激活激酶活性,产生的激活常数比配体与未复合的src SH2结构域结合的解离常数大200倍。这些数据表明pY530与SH2结构域分子内缔合的平衡常数为2 hundred(无单位)。我们提出pY530-SH2相互作用通过下调src TK活性5倍来调节信号转导,也许更重要的是通过抑制与SH2结构域的蛋白质 - 蛋白质相互作用。这些结果对于开发作为控制异常信号转导治疗药物的SH2配体具有重要意义。与下调的src TK相比,这些配体在抑制蛋白质 - 蛋白质相互作用方面的效果比与活化的src TK相比要低200倍。这应能使正常细胞中src TK活性的激活最小化,并导致治疗指数增加。

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