Mol Clifford D, Dougan Douglas R, Schneider Thomas R, Skene Robert J, Kraus Michelle L, Scheibe Daniel N, Snell Gyorgy P, Zou Hua, Sang Bi-Ching, Wilson Keith P
Syrrx, Inc., San Diego, California, 92121, USA.
J Biol Chem. 2004 Jul 23;279(30):31655-63. doi: 10.1074/jbc.M403319200. Epub 2004 Apr 29.
The activity of the c-Kit receptor protein-tyrosine kinase is tightly regulated in normal cells, whereas deregulated c-Kit kinase activity is implicated in the pathogenesis of human cancers. The c-Kit juxtamembrane region is known to have an autoinhibitory function; however the precise mechanism by which c-Kit is maintained in an autoinhibited state is not known. We report the 1.9-A resolution crystal structure of native c-Kit kinase in an autoinhibited conformation and compare it with active c-Kit kinase. Autoinhibited c-Kit is stabilized by the juxtamembrane domain, which inserts into the kinase-active site and disrupts formation of the activated structure. A 1.6-A crystal structure of c-Kit in complex with STI-571 (Imatinib or Gleevec) demonstrates that inhibitor binding disrupts this natural mechanism for maintaining c-Kit in an autoinhibited state. Together, these results provide a structural basis for understanding c-Kit kinase autoinhibition and will facilitate the structure-guided design of specific inhibitors that target the activated and autoinhibited conformations of c-Kit kinase.
在正常细胞中,c-Kit受体蛋白酪氨酸激酶的活性受到严格调控,而c-Kit激酶活性失调与人类癌症的发病机制有关。已知c-Kit近膜区具有自抑制功能;然而,c-Kit维持自抑制状态的确切机制尚不清楚。我们报道了处于自抑制构象的天然c-Kit激酶的1.9埃分辨率晶体结构,并将其与活性c-Kit激酶进行比较。自抑制的c-Kit通过近膜结构域得以稳定,该结构域插入激酶活性位点并破坏活化结构的形成。c-Kit与STI-571(伊马替尼或格列卫)复合物的1.6埃晶体结构表明,抑制剂结合破坏了将c-Kit维持在自抑制状态的这种天然机制。这些结果共同为理解c-Kit激酶自抑制提供了结构基础,并将促进针对c-Kit激酶活化和自抑制构象的特异性抑制剂的结构导向设计。