Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Francis Bitter Magnet Laboratory, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
J Biomol NMR. 2019 Sep;73(8-9):451-460. doi: 10.1007/s10858-019-00242-8. Epub 2019 Aug 12.
The second isoform of the human voltage dependent anion channel (VDAC2) is a mitochondrial porin that translocates calcium and other metabolites across the outer mitochondrial membrane. VDAC2 has been implicated in cardioprotection and plays a critical role in a unique apoptotic pathway in tumor cells. Despite its medical importance, there have been few biophysical studies of VDAC2 in large part due to the difficulty of obtaining homogeneous preparations of the protein for spectroscopic characterization. Here we present high resolution magic angle spinning nuclear magnetic resonance (NMR) data obtained from homogeneous preparation of human VDAC2 in 2D crystalline lipid bilayers. The excellent resolution in the spectra permit several sequence-specific assignments of the signals for a large portion of the VDAC2 N-terminus and several other residues in two- and three-dimensional heteronuclear correlation experiments. The first 12 residues appear to be dynamic, are not visible in cross polarization experiments, and they are not sufficiently mobile on very fast timescales to be visible in C INEPT experiments. A comparison of the NMR spectra of VDAC2 and VDAC1 obtained from highly similar preparations demonstrates that the spectral quality, line shapes and peak dispersion exhibited by the two proteins are nearly identical. This suggests an overall similar dynamic behavior and conformational homogeneity, which is in contrast to two earlier reports that suggested an inherent conformational heterogeneity of VDAC2 in membranes. The current data suggest that the sample preparation and spectroscopic methods are likely applicable to studying other human membrane porins, including human VDAC3, which has not yet been structurally characterized.
人类电压依赖性阴离子通道(VDAC2)的第二种异构体是一种线粒体孔道蛋白,可将钙和其他代谢物穿过外线粒体膜转运。VDAC2 已被牵连到心脏保护作用中,并在肿瘤细胞中发挥独特的凋亡途径中起着关键作用。尽管其具有医学重要性,但由于难以获得用于光谱特征描述的同质蛋白制剂,因此对 VDAC2 的生物物理研究很少。在这里,我们展示了在二维结晶脂质双层中从同质人 VDAC2 制剂中获得的高分辨率魔角旋转核磁共振(NMR)数据。在光谱中,极好的分辨率允许对 VDAC2 N 末端的大部分信号以及在二维和三维异核相关实验中的几个其他残基进行几个序列特异性分配。前 12 个残基似乎是动态的,在交叉极化实验中不可见,并且它们在非常快速的时间尺度上没有足够的流动性,在 C INEPT 实验中不可见。从高度相似的制剂获得的 VDAC2 和 VDAC1 的 NMR 光谱比较表明,两种蛋白质的光谱质量,线形和峰分散几乎相同。这表明整体上具有相似的动态行为和构象均一性,这与两个较早的报告相反,这些报告表明 VDAC2 在膜中的固有构象异质性。当前的数据表明,样品制备和光谱方法可能适用于研究其他人类膜孔道蛋白,包括尚未进行结构表征的人 VDAC3。