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首页> 外文期刊>Nature chemical biology >PH-domain-binding inhibitors of nucleotide exchange factor BRAG2 disrupt Arf GTPase signaling
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PH-domain-binding inhibitors of nucleotide exchange factor BRAG2 disrupt Arf GTPase signaling

机译:pH-域结合核苷酸交换因子BRAG2破坏ARF GTP酶信号传导

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摘要

Peripheral membrane proteins orchestrate many physiological and pathological processes, making regulation of their activities by small molecules highly desirable. However, they are often refractory to classical competitive inhibition. Here, we demonstrate that potent and selective inhibition of peripheral membrane proteins can be achieved by small molecules that target protein-membrane interactions by a noncompetitive mechanism. We show that the small molecule Bragsin inhibits BRAG2-mediated Arf GTPase activation in vitro in a manner that requires a membrane. In cells, Bragsin affects the trans-Golgi network in a BRAG2- and Arf-dependent manner. The crystal structure of the BRAG2-Bragsin complex and structure-activity relationship analysis reveal that Bragsin binds at the interface between the PH domain of BRAG2 and the lipid bilayer to render BRAG2 unable to activate lipidated Arf. Finally, Bragsin affects tumorsphere formation in breast cancer cell lines. Bragsin thus pioneers a novel class of drugs that function by altering protein-membrane interactions without disruption.
机译:外周膜蛋白协调了许多生理和病理过程,通过非常理想的小分子使其活性进行调节。然而,它们通常对古典竞争抑制令人难以理解。这里,我们证明了通过非竞争机制靶向蛋白质膜相互作用的小分子可以实现外周膜蛋白的有效和选择性抑制。我们表明,小分子吹牛蛋白以需要膜的方式在体外抑制Brag2介导的ARF GTP酶活化。在细胞中,Bragsin以布拉格2和ARF依赖性方式影响Trans-Golgi网络。 Brag2-Bragsin复合物和结构 - 活性关系分析的晶体结构揭示了Bragsin在Brag2的pH结构域与脂质双层之间的界面结合,以使Brag2不能激活脂质化ARF。最后,布拉克林影响乳腺癌细胞系中的肿瘤形成。因此,布拉克辛因此通过改变蛋白质 - 膜相互作用而不破坏的蛋白质 - 膜相互作用,使一种新型的药物。

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