Amblee Vaishak, Jeffery Constance J
Department of Biological Sciences, University of Illinois at Chicago, MC567, 900 S. Ashland Ave., Chicago, IL 60607, United States of America.
PLoS One. 2015 Jun 25;10(6):e0130575. doi: 10.1371/journal.pone.0130575. eCollection 2015.
Moonlighting proteins comprise a subset of multifunctional proteins that perform two or more biochemical functions that are not due to gene fusions, multiple splice variants, proteolytic fragments, or promiscuous enzyme activities. The project described herein focuses on a sub-set of moonlighting proteins that have a canonical biochemical function inside the cell and perform a second biochemical function on the cell surface in at least one species. The goal of this project is to consider the biophysical features of these moonlighting proteins to determine whether they have shared characteristics or defining features that might suggest why these particular proteins were adopted for a second function on the cell surface, or if these proteins resemble typical intracellular proteins. The latter might suggest that many other normally intracellular proteins found on the cell surface might also be moonlighting in this fashion. We have identified 30 types of proteins that have different functions inside the cell and on the cell surface. Some of these proteins are found to moonlight on the surface of multiple species, sometimes with different extracellular functions in different species, so there are a total of 98 proteins in the study set. Although a variety of intracellular proteins (enzymes, chaperones, etc.) are observed to be re-used on the cell surface, for the most part, these proteins were found to have physical characteristics typical of intracellular proteins. Many other intracellular proteins have also been found on the surface of bacterial pathogens and other organisms in proteomics experiments. It is quite possible that many of those proteins also have a moonlighting function on the cell surface. The increasing number and variety of known moonlighting proteins suggest that there may be more moonlighting proteins than previously thought, and moonlighting might be a common feature of many more proteins.
兼性蛋白是多功能蛋白的一个子集,它们执行两种或更多种生化功能,这些功能并非由基因融合、多种剪接变体、蛋白水解片段或混杂的酶活性导致。本文所述项目聚焦于兼性蛋白的一个子集,这些蛋白在细胞内具有典型的生化功能,并且在至少一个物种的细胞表面执行第二种生化功能。该项目的目标是研究这些兼性蛋白的生物物理特征,以确定它们是否具有共同特征或决定性特征,这些特征可能有助于解释为何这些特定蛋白会被用于细胞表面的第二种功能,或者这些蛋白是否类似于典型的细胞内蛋白。后者可能表明,许多其他通常位于细胞内但在细胞表面发现的蛋白也可能以这种方式兼性发挥作用。我们已经鉴定出30种在细胞内和细胞表面具有不同功能的蛋白。其中一些蛋白在多个物种的表面兼性发挥作用,有时在不同物种中具有不同的细胞外功能,因此研究集中共有98种蛋白。尽管观察到多种细胞内蛋白(酶、伴侣蛋白等)在细胞表面被重复利用,但在很大程度上,这些蛋白被发现具有细胞内蛋白的典型物理特征。在蛋白质组学实验中,还在细菌病原体和其他生物体的表面发现了许多其他细胞内蛋白。很有可能其中许多蛋白在细胞表面也具有兼性功能。已知兼性蛋白的数量和种类不断增加,这表明可能存在比以前认为的更多的兼性蛋白,而且兼性可能是更多蛋白的共同特征。