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首页> 外文期刊>The Biochemical Journal >Crystal structure of an SH2-kinase construct of c-Abl and effect of the SH2 domain on kinase activity
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Crystal structure of an SH2-kinase construct of c-Abl and effect of the SH2 domain on kinase activity

机译:c-Abl的SH2-激酶构建体的晶体结构以及SH2域对激酶活性的影响

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摘要

Constitutive activation of the non-receptor tyrosine kinase c-Abl (cellular Abelson tyrosine protein kinase 1, Abl1) in the Bcr (breakpoint cluster region)-Abl1 fusion oncoprotein is the molecular cause of chronic myeloid leukaemia (CML). Recent studies have indicated that an interaction between the SH2 (Srchomology 2) domain and the N-lobe (N-terminal lobe) of the c-Abl kinase domain (KD) has a critical role in leukaemogenesis [Grebien et al. (2011) Cell 147, 306-319; Sherbenou et al. (2010) Blood 116, 3278-3285]. To dissect the structural basis of this phenomenon, we studied c-Abl constructs comprising the SH2 and KDs in vitro. We present a crystal structure of an SH2-KD construct bound to dasatinib, which contains the relevant interface between the SH2 domain and the N-lobe of the KD. We show that the presence of the SH2 domain enhances kinase activity moderately and that this effect depends on contacts in the SH2/N-lobe interface and is abrogated by specific mutations. Consistently, formation of the interface decreases slightly the association rate of imatinib with the KD. That the effects are small compared with the dramatic in vivo consequences suggests an important function of the SH2-N-lobe interaction might be to help disassemble the auto-inhibited conformation of c-Abl and promote processive phosphorylation, rather than substantially stimulate kinase activity.
机译:Bcr(断点簇区域)-Abl1融合癌蛋白中非受体酪氨酸激酶c-Abl(细胞Abelson酪氨酸蛋白激酶1,Abl1)的组成性激活是慢性粒细胞白血病(CML)的分子原因。最近的研究表明,SH2(Srchomology 2)域和c-Abl激酶域(KD)的N瓣(N末端叶)之间的相互作用在白细胞生成中起着至关重要的作用[Grebien等。 (2011)Cell 147,306-319; Sherbenou等。 (2010)Blood 116,3278-3285]。为了剖析这种现象的结构基础,我们在体外研究了包含SH2和KD的c-Abl构建体。我们提出绑定到dasatinib的SH2-KD构造的晶体结构,其中包含SH2域和KD的N瓣之间的相关界面。我们显示,SH2域的存在适度增强了激酶活性,并且这种作用取决于SH2 / N-叶界面中的接触,并被特定的突变所废除。一致地,界面的形成稍微降低了伊马替尼与KD的缔合率。与体内显着后果相比,该作用较小,表明SH2-N-叶相互作用的重要功能可能是帮助拆卸c-Abl的自抑制构象并促进进行性磷酸化,而不是实质上刺激激酶活性。

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