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首页> 外文期刊>The biochemical journal >Identification and biophysical assessment of the molecular recognition mechanisms between the human haemopoietic cell kinase Src homology domain 3 and ALG-2-interacting protein X
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Identification and biophysical assessment of the molecular recognition mechanisms between the human haemopoietic cell kinase Src homology domain 3 and ALG-2-interacting protein X

机译:人类造血细胞激酶Src同源结构域3与ALG-2相互作用蛋白X之间的分子识别机制的鉴定和生物物理评估

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摘要

pSFKs (Src family kinases) are central regulators of many signalling pathways. Their functions are tightly regulated through SH (Src homology) domain-mediated protein–protein interactions. A yeast two-hybrid screen using SH3 domains as bait identified Alix [ALG-2 (apoptosis-linked gene 2)-interacting protein X] as a novel Hck (haemopoietic cell kinase) SH3 domain interactor. The Alix–Hck-SH3 interaction was confirmed iin vitro/i by a GST (glutathione transferase) pull-down assay and in intact cells by a mammalian two-hybrid assay. Furthermore, the interaction was demonstrated to be biologically relevant in cells. Through biophysical experiments, we then identified the PRR (proline-rich region) motif of Alix that binds Hck-SH3 and determined a dissociation constant of 34.5 μM. Heteronuclear NMR spectroscopy experiments were used to map the Hck-SH3 residues that interact with an ALIX construct containing the V and PRR domains or with the minimum identified interacting motif. Finally, SAXS (small-angle X-ray scattering) analysis showed that the N-terminal PRR of Alix is unfolded, at least before Hck-SH3 recognition. These results indicate that residues outside the canonical PxxP motif of Alix enhance its affinity and selectivity towards Hck-SH3. The structural framework of the Hck–Alix interaction will help to clarify how Hck and Alix assist during virus budding and cell-surface receptor regulation./p
机译:SFK(Src家族激酶)是许多信号通路的中央调节剂。它们的功能通过SH(Src同源性)域介导的蛋白间相互作用而受到严格调节。使用SH3域作为诱饵的酵母双杂交筛选将Alix [ALG-2(凋亡相关基因2)相互作用蛋白X]鉴定为新型Hck(造血细胞激酶)SH3域相互作用因子。通过GST(谷胱甘肽转移酶)下拉测定法在体外证实了Alix-Hck-SH3的相互作用,通过哺乳动物两杂交测定法在完整的细胞中证实了Alix-Hck-SH3的相互作用。此外,相互作用被证明与细胞生物学相关。通过生物物理实验,我们然后鉴定了Alix与Hck-SH3结合的PRR(富含脯氨酸的区域)基序,并确定了34.5μM的解离常数。异核NMR光谱实验用于绘制与含有V和PRR结构域或具有最小识别相互作用基序的ALIX构建体相互作用的Hck-SH3残基。最后,SAXS(小角度X射线散射)分析表明,至少在Hck-SH3识别之前,Alix的N末端PRR就已经展开。这些结果表明,Alix的典型PxxP基序之外的残基增强了其对Hck-SH3的亲和力和选择性。 Hck-Alix相互作用的结构框架将有助于阐明Hck和Alix在病毒出芽和细胞表面受体调节过程中如何协助。
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