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质谱定量分析环境 pH 对白色念珠菌细胞壁蛋白质组适应的变化。

Mass spectrometric quantification of the adaptations in the wall proteome of Candida albicans in response to ambient pH.

机构信息

Swammerdam Institute for Life Sciences, University of Amsterdam, Science Park 904, 1098 XH Amsterdam, The Netherlands.

出版信息

Microbiology (Reading). 2011 Jan;157(Pt 1):136-146. doi: 10.1099/mic.0.044206-0. Epub 2010 Sep 23.

DOI:10.1099/mic.0.044206-0
PMID:20864472
Abstract

The mucosal layers colonized by the pathogenic fungus Candida albicans differ widely in ambient pH. Because the properties and functions of wall proteins are probably pH dependent, we hypothesized that C. albicans adapts its wall proteome to the external pH. We developed an in vitro system that mimics colonization of mucosal surfaces by growing biomats at pH 7 and 4 on semi-solid agarose containing mucin as the sole nitrogen source. The biomats expanded radially for at least 8 days at a rate of ~30 μm h(-1). At pH 7, hyphal growth predominated and growth was invasive, whereas at pH 4 only yeast and pseudohyphal cells were present and growth was noninvasive. Both qualitative mass spectrometric analysis of the wall proteome by tandem mass spectrometry and relative quantification of individual wall proteins (pH 7/pH 4), using Fourier transform mass spectrometry (FT-MS) and a reference mixture of (15)N-labelled yeast and hyphal walls, identified similar sets of >20 covalently linked wall proteins. The adhesion proteins Als1 and Als3, Hyr1, the transglucosidase Phr1, the detoxification enzyme Sod5 and the mammalian transglutaminase substrate Hwp1 (immunological detection) were only present at pH 7, whereas at pH 4 the level of the transglucosidase Phr2 was >35-fold higher than at pH 7. Sixteen out of the 22 proteins identified by FT-MS showed a greater than twofold change. These results demonstrate that ambient pH strongly affects the wall proteome of C. albicans, show that our quantitative approach can give detailed insights into the dynamics of the wall proteome, and point to potential vaccine targets.

摘要

定植于致病性真菌白色念珠菌的黏膜层的环境 pH 值差异很大。由于细胞壁蛋白的特性和功能可能依赖于 pH 值,我们假设白色念珠菌会使其细胞壁蛋白质组适应外部 pH 值。我们开发了一种体外系统,通过在含有粘蛋白作为唯一氮源的半固体琼脂糖上在 pH 值 7 和 4 下生长生物基质来模拟黏膜表面的定植。生物基质以约 30 µm h(-1)的速度至少在 8 天内径向扩展。在 pH 值 7 时,菌丝生长为主,生长具有侵袭性,而在 pH 值 4 时只有酵母和假菌丝细胞存在,生长是非侵袭性的。通过串联质谱对细胞壁蛋白质组进行定性质谱分析以及使用傅里叶变换质谱 (FT-MS) 和 (15)N 标记的酵母和菌丝细胞壁的参考混合物对单个细胞壁蛋白质进行相对定量 (pH 值 7/pH 值 4),都鉴定出了相似的一组>20 个共价连接的细胞壁蛋白质。粘附蛋白 Als1 和 Als3、Hyr1、转葡聚糖酶 Phr1、解毒酶 Sod5 和哺乳动物转谷氨酰胺酶底物 Hwp1(免疫检测)仅在 pH 值 7 时存在,而在 pH 值 4 时 Phr2 转葡聚糖酶的水平比 pH 值 7 时高>35 倍。通过 FT-MS 鉴定的 22 个蛋白质中有 16 个显示出两倍以上的变化。这些结果表明环境 pH 值强烈影响白色念珠菌的细胞壁蛋白质组,表明我们的定量方法可以深入了解细胞壁蛋白质组的动态,并指出潜在的疫苗靶点。

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