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Critical cysteine residues for regulation of integrin alphaIIbbeta3 are clustered in the epidermal growth factor domains of the beta3 subunit.

机译:调节整联蛋白alphaIIbbeta3的关键半胱氨酸残基聚集在beta3亚基的表皮生长因子域中。

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摘要

Chemical or enzymic reduction/oxidation of integrin cysteine residues (e.g. by reducing agents and protein disulphide isomerase) may be a mechanism for regulating integrin function. It has also been proposed that unique cysteine residues in the integrin beta3 subunit are involved in the regulation of alphaIIbbeta3. In the present study, we studied systematically the role of disulphide bonds in beta3 on the ligand-binding function of alphaIIbbeta3 by mutating individual cysteine residues of beta3 to serine. We found that the disulphide bonds that are critical for alphaIIbbeta3 regulation are clustered within the EGF (epidermal growth factor) domains. Interestingly, disrupting only a single disulphide bond in the EGF domains was enough to activate alphaIIbbeta3 fully. In contrast, only two (of 13) disulphide bonds tested outside the EGF domains activated alphaIIbbeta3. These results suggest that the disulphide bonds in the EGF domains should be intact to keep alphaIIbbeta3 in an inactive state, and that there is no unique cysteine residue in the EGF domain critical for regulating the receptor. The cysteine residues in the EGF domains are potential targets for chemical or enzymic reduction.
机译:整联蛋白半胱氨酸残基的化学或酶促还原/氧化(例如通过还原剂和蛋白质二硫键异构酶)可能是调节整联蛋白功能的机制。还已经提出,整联蛋白β3亚基中独特的半胱氨酸残基参与αIIbβ3的调节。在本研究中,我们通过将beta3的单个半胱氨酸残基突变为丝氨酸,系统地研究了beta3中的二硫键对alphaIIbbeta3的配体结合功能的作用。我们发现,对于alphaIIbbeta3调节至关重要的二硫键聚集在EGF(表皮生长因子)域内。有趣的是,仅破坏EGF域中的单个二硫键就足以完全激活alphaIIbbeta3。相反,在EGF域之外测试的13个二硫键中只有两个激活了alphaIIbbeta3。这些结果表明,EGF结构域中的二硫键应完整无缺,以保持alphaIIbbeta3处于非活性状态,并且EGF结构域中不存在对调节受体至关重要的独特半胱氨酸残基。 EGF域中的半胱氨酸残基是化学或酶促还原的潜在目标。

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