Domchek S M, Auger K R, Chatterjee S, Burke T R, Shoelson S E
Joslin Diabetes Center, Brigham and Women's Hospital, Boston, Massachusetts 02215.
Biochemistry. 1992 Oct 20;31(41):9865-70. doi: 10.1021/bi00156a002.
Using the association between the pp60c-src/polyoma virus middle T antigen (mT) complex and phosphatidylinositol 3'-kinase (PI 3-kinase) as a prototype for phosphoprotein-SH2 domain interactions, we tested whether a nonhydrolyzable phosphonopeptide would inhibit association. (Phosphonomethyl)-phenylalanine (Pmp) is a nonnatural analogue of phosphotyrosine in which the > C-O-PO3H2 moiety is replaced by > C-CH2-PO3H2. We synthesized a 13 amino acid phosphonopeptide (mT-Pmp315), a related phosphopeptide (mT-pY315), and an unmodified sequence (mT-Y315), all corresponding to the pp60c-src-phosphorylated site of the mT which is within a YMXM motif common to proteins that bind to and activate PI 3-kinase. Only the phosphonopeptide persistently blocked the in vitro association of the baculovirus-expressed pp60c-src/mT complex with cytosolic PI 3-kinase activity. Sustained inhibition of association by the phosphopeptide required the additional presence of vanadate, a potent protein tyrosine phosphatase (PTPase) inhibitor. The phosphopeptide and L-phosphonopeptide bound tightly (KD approximately 10-20 nM) and specifically to isolated SH2 domains of PI 3-kinase p85, demonstrating that the mechanism of inhibited association is competitive binding to PI 3-kinase SH2 domains. We conclude that the appropriate phosphonopeptide sequence inhibits the interaction between a tyrosine-phosphorylated protein and a cognate SH2 domain-containing protein and is resistant to the actions of PTPases. Proteolytically stable phosphonopeptide derivatives should be useful inhibitors of protein-protein interactions when introduced into cells and may provide a basis for the rational design of a new class of chemotherapeutic agent.
以pp60c-src/多瘤病毒中T抗原(mT)复合物与磷脂酰肌醇3'-激酶(PI 3-激酶)之间的关联作为磷蛋白-SH2结构域相互作用的原型,我们测试了一种不可水解的膦肽是否会抑制这种关联。(膦酰甲基)-苯丙氨酸(Pmp)是磷酸酪氨酸的一种非天然类似物,其中>C-O-PO3H2部分被>C-CH2-PO3H2取代。我们合成了一种13个氨基酸的膦肽(mT-Pmp315)、一种相关的磷酸肽(mT-pY315)和一个未修饰的序列(mT-Y315),它们都对应于mT的pp60c-src磷酸化位点,该位点位于与PI 3-激酶结合并激活的蛋白质共有的YMXM基序内。只有膦肽持续阻断了杆状病毒表达的pp60c-src/mT复合物与胞质PI 3-激酶活性的体外关联。磷酸肽对关联的持续抑制需要额外存在钒酸盐,一种有效的蛋白酪氨酸磷酸酶(PTPase)抑制剂。该磷酸肽和L-膦肽与PI 3-激酶p85的分离SH2结构域紧密结合(KD约为10 - 20 nM)且具有特异性,表明抑制关联的机制是与PI 3-激酶SH2结构域竞争性结合。我们得出结论,合适的膦肽序列可抑制酪氨酸磷酸化蛋白与含同源SH2结构域蛋白之间的相互作用,并且对PTPases的作用具有抗性。当引入细胞时,蛋白水解稳定的膦肽衍生物应是蛋白质-蛋白质相互作用的有用抑制剂,并可能为新型化疗药物的合理设计提供基础。