Department of Biochemistry and Molecular Biology , University of Arkansas for Medical Sciences , 4301 West Markham Street , Little Rock , Arkansas 72205 , United States.
Arkansas Children's Research Institute , 13 Children's Way , Little Rock , Arkansas 72202 , United States.
J Proteome Res. 2018 Oct 5;17(10):3384-3395. doi: 10.1021/acs.jproteome.8b00288. Epub 2018 Sep 27.
The staphylococcal accessory regulator A ( sarA) impacts the extracellular accumulation of Staphylococcus aureus virulence factors at the level of intracellular production and extracellular protease-mediated degradation. We previously used a proteomics approach that measures protein abundance of all proteoforms to demonstrate that mutation of sarA results in increased levels of extracellular proteases and assesses the impact of this on the accumulation of S. aureus exoproteins. Our previous approach was limited as it did not take into account that large, stable proteolytic products from a given protein could result in false negatives when quantified by total proteoforms. Here, our goal was to use an expanded proteomics approach utilizing a dual quantitative method for measuring abundance at both the total proteoform and full-length exoprotein levels to alleviate these false negatives and thereby provide for characterization of protease-dependent and -independent effects of sarA mutation on the S. aureus exoproteome. Proteins present in conditioned medium from overnight, stationary phase cultures of the USA300 strain LAC, an isogenic sarA mutant, and a sarA mutant unable to produce any of the known extracellular proteases ( sarA/protease) were resolved using one-dimensional gel electrophoresis. Quantitative proteomic comparisons of sarA versus sarA/protease mutants identified proteins that were cleaved in a protease-dependent manner owing to mutation of sarA, and comparisons of sarA/protease mutant versus the LAC parent strain identified proteins in which abundance was altered in a sarA mutant in a protease-independent manner. Furthermore, the proteins uniquely identified by the full-length data analysis approach eliminated false negatives observed in the total proteoform analysis. This expanded approach provided for a more comprehensive analysis of the impact of mutating sarA on the S. aureus exoproteome.
葡萄球菌附属调节因子 A(sarA)通过细胞内产生和细胞外蛋白酶介导的降解水平来影响金黄色葡萄球菌毒力因子的细胞外积累。我们之前使用了一种蛋白质组学方法,该方法测量所有蛋白质形式的蛋白质丰度,以证明 sarA 突变会导致细胞外蛋白酶水平升高,并评估这对金黄色葡萄球菌外蛋白质积累的影响。我们之前的方法存在局限性,因为它没有考虑到来自给定蛋白质的大的、稳定的蛋白水解产物在通过总蛋白质形式进行定量时可能会导致假阴性。在这里,我们的目标是使用一种扩展的蛋白质组学方法,利用双定量方法测量总蛋白质形式和全长外蛋白质水平的丰度,以减轻这些假阴性,并从而提供对 sarA 突变对金黄色葡萄球菌外蛋白质组的蛋白酶依赖性和非依赖性影响的特征描述。使用一维凝胶电泳分离过夜、稳定期 USA300 株 LAC、同源 sarA 突变体和不能产生任何已知细胞外蛋白酶的 sarA 突变体(sarA/蛋白酶)的条件培养基中存在的蛋白质。sarA 与 sarA/蛋白酶突变体的定量蛋白质组比较确定了由于 sarA 突变而以蛋白酶依赖性方式切割的蛋白质,并且 sarA/蛋白酶突变体与 LAC 亲本菌株的比较确定了以蛋白酶非依赖性方式在 sarA 突变体中丰度改变的蛋白质。此外,全长数据分析方法唯一鉴定的蛋白质消除了总蛋白质形式分析中观察到的假阴性。这种扩展的方法为更全面地分析 sarA 突变对金黄色葡萄球菌外蛋白质组的影响提供了可能。