首页> 美国卫生研究院文献>Journal of Bacteriology >Two-Dimensional Gel Electrophoresis Analyses of pH-Dependent Protein Expression in Facultatively Alkaliphilic Bacillus pseudofirmus OF4 Lead to Characterization of an S-Layer Protein with a Role in Alkaliphily
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Two-Dimensional Gel Electrophoresis Analyses of pH-Dependent Protein Expression in Facultatively Alkaliphilic Bacillus pseudofirmus OF4 Lead to Characterization of an S-Layer Protein with a Role in Alkaliphily

机译:碱性嗜碱芽孢杆菌OF4的pH依赖性蛋白表达的二维凝胶电泳分析导致表征S层蛋白在碱性脂中的作用

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摘要

The large majority of proteins of alkaliphilic Bacillus pseudofirmus OF4 grown at pH 7.5 and 10.5, as studied by two-dimensional gel electrophoresis analyses, did not exhibit significant pH-dependent variation. A new surface layer protein (SlpA) was identified in these studies. Although the prominence of some apparent breakdown products of SlpA in gels from pH 10.5-grown cells led to discovery of the alkaliphile S-layer, the largest and major SlpA forms were present in large amounts in gels from pH 7.5-grown cells as well. slpA RNA abundance was, moreover, unchanged by growth pH. SlpA was similar in size to homologues from nonalkaliphiles but contained fewer Arg and Lys residues. An slpA mutant strain (RG21) lacked an exterior S-layer that was identified in the wild type by electron microscopy. Electrophoretic analysis of whole-cell extracts further indicated the absence of a 90-kDa band in the mutant. This band was prominent in wild-type extracts from both pH 7.5- and 10.5-grown cells. The wild type grew with a shorter lag phase than RG21 at either pH 10.5 or 11 and under either Na+-replete or suboptimal Na+ concentrations. The extent of the adaptation deficit increased with pH elevation and suboptimal Na+. By contrast, the mutant grew with a shorter lag and faster growth rate than the wild type at pH 7.5 under Na+-replete and suboptimal Na+ conditions, respectively. Logarithmically growing cells of the two strains exhibited no significant differences in growth rate, cytoplasmic pH regulation, starch utilization, motility, Na+-dependent transport of α-aminoisobutyric acid, or H+-dependent synthesis of ATP. However, the capacity for Na+-dependent pH homeostasis was diminished in RG21 upon a sudden upward shift of external pH from 8.5 to 10.5. The energy cost of retaining the SlpA layer at near-neutral pH is apparently adverse, but the constitutive presence of SlpA enhances the capacity of the extremophile to adjust to high pH.
机译:通过二维凝胶电泳分析研究,在pH 7.5和10.5时生长的大多数嗜碱芽孢杆菌OF4蛋白没有表现出明显的pH依赖性变化。在这些研究中鉴定出一种新的表面层蛋白(SlpA)。尽管在pH 10.5生长的细胞中的凝胶中明显突出了SlpA的某些分解产物,从而发现了亲碱的S层,但在pH 7.5生长的细胞中的凝胶中也大量存在着最大和主要的SlpA形式。此外,slpA RNA丰度因生长pH值而不变。 SlpA在大小上与来自非碱金属的同源物相似,但是含有更少的Arg和Lys残基。 slpA突变株(RG21)缺少外部S层,该层通过电子显微镜鉴定为野生型。全细胞提取物的电泳分析进一步表明,突变体中不存在90kDa的条带。在pH 7.5和10.5生长的细胞的野生型提取物中,该条带非常明显。在pH <10.5或11且Na + -完全或次优Na + 浓度下,野生型的生长延迟期比RG21短。适应缺陷的程度随pH升高和Na + 次优而增加。相比之下,在Na + -完全和次优Na + 条件下,突变体的生长比野生型具有更短的滞后和更快的生长速率。两株菌株的对数生长细胞在生长速度,细胞质pH调节,淀粉利用,运动性,Na + 依赖的α-氨基异丁酸或H + 转运方面均无显着差异。依赖于ATP的合成。然而,当外部pH值突然从8.5向上移动到RG21时,Na + 依赖的pH稳态的能力降低。将SlpA层保持在接近中性的pH值上的能源成本显然是不利的,但是SlpA的组成型存在会增强极端微生物适应高pH值的能力。

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