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Photoaffinity labeling with cholesterol analogues precisely maps a cholesterol-binding site in voltage-dependent anion channel-1

机译:用胆固醇类似物进行光亲和性标记可精确绘制电压依赖性阴离子通道1中的胆固醇结合位点

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摘要

Voltage-dependent anion channel-1 (VDAC1) is a highly regulated β-barrel membrane protein that mediates transport of ions and metabolites between the mitochondria and cytosol of the cell. VDAC1 co-purifies with cholesterol and is functionally regulated by cholesterol, among other endogenous lipids. Molecular modeling studies based on NMR observations have suggested five cholesterol-binding sites in VDAC1, but direct experimental evidence for these sites is lacking. Here, to determine the sites of cholesterol binding, we photolabeled purified mouse VDAC1 (mVDAC1) with photoactivatable cholesterol analogues and analyzed the photolabeled sites with both top-down mass spectrometry (MS), and bottom-up MS paired with a clickable, stable isotope-labeled tag, FLI-tag. Using cholesterol analogues with a diazirine in either the 7 position of the steroid ring (LKM38) or the aliphatic tail (KK174), we mapped a binding pocket in mVDAC1 localized to Thr83 and Glu73, respectively. When Glu73 was mutated to a glutamine, KK174 no longer photolabeled this residue, but instead labeled the nearby Tyr62 within this same binding pocket. The combination of analytical strategies employed in this work permits detailed molecular mapping of a cholesterol-binding site in a protein, including an orientation of the sterol within the site. Our work raises the interesting possibility that cholesterol-mediated regulation of VDAC1 may be facilitated through a specific binding site at the functionally important Glu73 residue.
机译:电压依赖性阴离子通道1(VDAC1)是一种高度调节的β-桶形膜蛋白,介导离子和代谢物在细胞线粒体和细胞质之间的运输。 VDAC1与胆固醇共纯化,并受胆固醇以及其他内源性脂质的功能调节。基于NMR观察的分子模型研究表明,VDAC1中有五个胆固醇结合位点,但是缺少这些位点的直接实验证据。在这里,为了确定胆固醇的结合位点,我们用可光活化的胆固醇类似物对纯化的小鼠VDAC1(mVDAC1)进行了光标记,并使用自上而下的质谱(MS)和自下而上的MS与可单击的稳定同位素配对来分析了光标记的位点标签的标签,FLI标签。使用在类固醇环(LKM38)或脂肪族尾巴(KK174)的7位带有二嗪的胆固醇类似物,我们在mVDAC1中的结合口袋中定位了Thr 83 和Glu 73 。当Glu 73 突变为谷氨酰胺时,KK174不再对该残基进行光标记,而是在同一结合口袋中标记了附近的Tyr 62 。这项工作中采用的分析策略相结合,可以对蛋白质中胆固醇结合位点进行详细的分子作图,包括该位点内固醇的方向。我们的工作提出了有趣的可能性,即胆固醇可以通过功能上重要的Glu 73 残基上的特定结合位点促进VDAC1的调控。

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