Runke Greg, Maier Elke, Summers William A T, Bay Denice C, Benz Roland, Court Deborah A
Department of Microbiology, University of Manitoba, Winnipeg, Manitoba, R3T 2N2 Canada.
Biophys J. 2006 May 1;90(9):3155-64. doi: 10.1529/biophysj.105.072520. Epub 2006 Feb 24.
Mitochondrial porins are predicted to traverse the outer membrane as a series of beta-strands, but the precise structure of the resulting beta-barrel has remained elusive. Toward determining the positions of the membrane-spanning segments, a series of small deletions was introduced into several of the predicted beta-strands of the Neurospora crassa porin. Overall, three classes of porin variants were identified: i), those producing large, stable pores, indicating deletions likely outside of beta-strands; ii), those with minimal pore-forming ability, indicating disruptions in key beta-strands or beta-turns; and iii), those that formed small unstable pores with a variety of gating and ion-selectivity properties. The latter class presumably results from a subset of proteins that adopt an alternative barrel structure upon the loss of stabilizing residues. Some variants were not sufficiently stable in detergent for structural analysis; circular dichroism spectropolarimetry of those that were did not reveal significant differences in the overall structural composition among the detergent-solubilized porin variants and the wild-type protein. Several of the variants displayed altered tryptophan fluorescence profiles, indicative of differing microenvironments surrounding these residues. Based on these results, modifications to the existing models for porin structure are proposed.
线粒体孔蛋白预计以一系列β链穿越外膜,但由此产生的β桶的确切结构仍不清楚。为了确定跨膜片段的位置,在粗糙脉孢菌孔蛋白的几个预测β链中引入了一系列小的缺失。总体而言,鉴定出了三类孔蛋白变体:i)那些产生大的、稳定孔的变体,表明缺失可能在β链之外;ii)那些形成孔能力最小的变体,表明关键β链或β转角受到破坏;iii)那些形成具有各种门控和离子选择性特性的小的不稳定孔的变体。后一类可能是由于一部分蛋白质在失去稳定残基后采用了另一种桶状结构。一些变体在去污剂中不够稳定,无法进行结构分析;对那些进行圆二色光谱偏振分析的变体,未发现去污剂溶解的孔蛋白变体与野生型蛋白在整体结构组成上有显著差异。一些变体显示出改变的色氨酸荧光谱,表明这些残基周围的微环境不同。基于这些结果,对现有的孔蛋白结构模型提出了修改建议。