Ozgur Beytullah, Dunn Cory D, Sayar Mehmet
College of Engineering, Koç University, Sarıyer, İstanbul 34450, Turkey.
Institute of Biotechnology, University of Helsinki, 00014 Helsinki, Finland.
Membranes (Basel). 2022 Jul 31;12(8):752. doi: 10.3390/membranes12080752.
Proteins can be targeted to organellar membranes by using a tail anchor (TA), a stretch of hydrophobic amino acids found at the polypeptide carboxyl-terminus. The Fis1 protein (Fis1p), which promotes mitochondrial and peroxisomal division in the yeast , is targeted to those organelles by its TA. Substantial evidence suggests that Fis1p insertion into the mitochondrial outer membrane can occur without the need for a translocation machinery. However, recent findings raise the possibility that Fis1p insertion into mitochondria might be promoted by a proteinaceous complex. Here, we have performed atomistic and coarse-grained molecular dynamics simulations to analyze the adsorption, conformation, and orientation of the Fis1(TA). Our results support stable insertion at the mitochondrial outer membrane in a monotopic, rather than a bitopic (transmembrane), configuration. Once inserted in the monotopic orientation, unassisted transition to the bitopic orientation is expected to be blocked by the highly charged nature of the TA carboxyl-terminus and by the Fis1p cytosolic domain. Our results are consistent with a model in which Fis1p does not require a translocation machinery for insertion at mitochondria.
通过使用尾锚(TA),即位于多肽羧基末端的一段疏水氨基酸序列,蛋白质可以被靶向运输到细胞器膜上。促进酵母中线粒体和过氧化物酶体分裂的Fis1蛋白(Fis1p),就是通过其TA被靶向运输到这些细胞器的。大量证据表明,Fis1p插入线粒体外膜可能无需转运机制。然而,最近的研究结果提出了一种可能性,即Fis1p插入线粒体可能是由一种蛋白质复合物促进的。在这里,我们进行了原子尺度和粗粒度的分子动力学模拟,以分析Fis1(TA)的吸附、构象和取向。我们的结果支持其以单一位点而非双位点(跨膜)的构型稳定插入线粒体外膜。一旦以单一位点方向插入,由于TA羧基末端的高电荷性质以及Fis1p胞质结构域的存在,预计向双位点方向的无辅助转变会受到阻碍。我们的结果与一个模型一致,即Fis1p插入线粒体不需要转运机制。