Böhmer Frank D, Karagyozov Luchezar, Uecker Andrea, Serve Hubert, Botzki Alexander, Mahboobi Siavosh, Dove Stefan
Research Unit Molecular Cell Biology, Medical Faculty, Friedrich Schiller University, D-07747 Jena, Germany.
J Biol Chem. 2003 Feb 14;278(7):5148-55. doi: 10.1074/jbc.M209861200. Epub 2002 Nov 14.
The tyrosine kinase inhibitor STI-571 potently blocks BCR-Abl, platelet-derived growth factor (PDGF) alpha- and beta-receptors, and c-Kit kinase activity. Flt3, a receptor tyrosine kinase closely related to PDGF receptors and c-Kit is, however, not inhibited by STI-571. Sequence alignments of different kinases and indications from the crystal structure of the STI-571 Abl kinase complex revealed amino acid residues that are probably crucial for this activity profile. It was predicted that Flt3 Phe-691 in the beta5 strand may sterically prevent interaction with STI-571. The point mutants Flt3 F691T and PDGFbeta-receptor T681F were constructed, and kinase assays showed that the Flt3 mutant but not the PDGFbeta-receptor mutant is inhibited by STI-571. Docking of STI-571 into computer models of the PDGFbeta-receptor and Flt3 kinase domains and comparison with the crystal structure of the STI-571 Abl kinase complex indicated very similar binding sites among the three nonphosphorylated kinases, suggesting corresponding courses of their Asp-Phe-Gly motifs and activation loops. Accordingly, we observed reduced sensitivity of preactivated compared with nonactivated PDGFR-beta for the inhibition by STI-571. Courses of the activation loop that collide with STI-571 binding explain its inactivity at other kinases as the insulin receptor. The binding site models of PDGFR-beta and Flt3 were applied to predict structural approaches for more selective PDGFbeta-receptor inhibitors.
酪氨酸激酶抑制剂STI - 571能有效阻断BCR - Abl、血小板衍生生长因子(PDGF)α和β受体以及c - Kit激酶活性。然而,与PDGF受体和c - Kit密切相关的受体酪氨酸激酶Flt3不受STI - 571抑制。不同激酶的序列比对以及STI - 571 Abl激酶复合物晶体结构的相关信息揭示了可能对这种活性谱起关键作用的氨基酸残基。据预测,β5链中的Flt3 Phe - 691可能在空间上阻止与STI - 571的相互作用。构建了点突变体Flt3 F691T和PDGFβ受体T681F,激酶分析表明STI - 571可抑制Flt3突变体而非PDGFβ受体突变体。将STI - 571对接至PDGFβ受体和Flt3激酶结构域的计算机模型中,并与STI - 571 Abl激酶复合物的晶体结构进行比较,结果表明这三种非磷酸化激酶具有非常相似的结合位点,这表明它们的天冬氨酸 - 苯丙氨酸 - 甘氨酸基序和激活环具有相应的走向。因此,我们观察到与未激活的PDGFR - β相比,预激活的PDGFR - β对STI - 571抑制的敏感性降低。与STI - 571结合发生碰撞的激活环走向解释了其对胰岛素受体等其他激酶无活性的原因。应用PDGFR - β和Flt3的结合位点模型来预测更具选择性的PDGFβ受体抑制剂的结构方法。