Suppr超能文献

芽孢形成条件对芽孢芽孢衣蛋白组成的影响

The Influence of Sporulation Conditions on the Spore Coat Protein Composition of Spores.

作者信息

Abhyankar Wishwas R, Kamphorst Kiki, Swarge Bhagyashree N, van Veen Henk, van der Wel Nicole N, Brul Stanley, de Koster Chris G, de Koning Leo J

机构信息

Department of Mass Spectrometry of Bio-macromolecules, Swammerdam Institute for Life Sciences, University of AmsterdamAmsterdam, Netherlands; Department of Molecular Biology and Microbial Food Safety, Swammerdam Institute for Life Sciences, University of AmsterdamAmsterdam, Netherlands.

Department of Mass Spectrometry of Bio-macromolecules, Swammerdam Institute for Life Sciences, University of Amsterdam Amsterdam, Netherlands.

出版信息

Front Microbiol. 2016 Oct 13;7:1636. doi: 10.3389/fmicb.2016.01636. eCollection 2016.

Abstract

Spores are of high interest to the food and health sectors because of their extreme resistance to harsh conditions, especially against heat. Earlier research has shown that spores prepared on solid agar plates have a higher heat resistance than those prepared under a liquid medium condition. It has also been shown that the more mature a spore is, the higher is its heat resistance most likely mediated, at least in part, by the progressive cross-linking of coat proteins. The current study for the first time assesses, at the proteomic level, the effect of two commonly used sporulation conditions on spore protein presence. N spores prepared on solid Schaeffer's-glucose (SG) agar plates and N metabolically labeled spores prepared in shake flasks containing 3-(-morpholino) propane sulfonic acid (MOPS) buffered defined liquid medium differ in their coat protein composition as revealed by LC-FT-MS/MS analyses. The former condition mimics the industrial settings while the latter conditions mimic the routine laboratory environment wherein spores are developed. As seen previously in many studies, the spores prepared on the solid agar plates show a higher thermal resistance than the spores prepared under liquid culture conditions. The N:N isotopic ratio of the 1:1 mixture of the spore suspensions exposes that most of the identified inner coat and crust proteins are significantly more abundant while most of the outer coat proteins are significantly less abundant for the spores prepared on solid SG agar plates relative to the spores prepared in the liquid MOPS buffered defined medium. Sporulation condition-specific differences and variation in isotopic ratios between the tryptic peptides of expected cross-linked proteins suggest that the coat protein cross-linking may also be condition specific. Since the core dipicolinic acid content is found to be similar in both the spore populations, it appears that the difference in wet heat resistance is connected to the differences in the coat protein composition and assembly. Corroborating the proteomic analyses, electron microscopy analyses show a significantly thinner outer coat layer of the spores cultured on the solid agar medium.

摘要

由于孢子对恶劣条件具有极强的抵抗力,尤其是耐高温,因此在食品和健康领域备受关注。早期研究表明,在固体琼脂平板上制备的孢子比在液体培养基条件下制备的孢子具有更高的耐热性。研究还表明,孢子越成熟,其耐热性越高,这很可能至少部分是由外壳蛋白的逐步交联介导的。本研究首次在蛋白质组学水平上评估了两种常用的孢子形成条件对孢子蛋白质存在情况的影响。通过液相色谱-傅里叶变换质谱/质谱分析发现,在固体薛费氏葡萄糖(SG)琼脂平板上制备的N个孢子和在含有3-(-吗啉代)丙烷磺酸(MOPS)缓冲的限定液体培养基的摇瓶中制备的N个代谢标记孢子,其外壳蛋白组成不同。前一种条件模拟工业环境,而后一种条件模拟孢子生长的常规实验室环境。正如之前许多研究中所见,在固体琼脂平板上制备的孢子比在液体培养条件下制备的孢子表现出更高的耐热性。相对于在液体MOPS缓冲限定培养基中制备的孢子,孢子悬浮液1:1混合物的N:N同位素比表明,对于在固体SG琼脂平板上制备的孢子,大多数已鉴定的内膜和外壳蛋白明显更丰富,而大多数外膜蛋白明显更少。预期交联蛋白的胰蛋白酶肽段之间的孢子形成条件特异性差异和同位素比变化表明,外壳蛋白交联也可能具有条件特异性。由于发现两种孢子群体中的核心吡啶二羧酸含量相似,因此湿热抗性的差异似乎与外壳蛋白组成和组装的差异有关。电子显微镜分析证实了蛋白质组学分析结果,显示在固体琼脂培养基上培养的孢子的外膜层明显更薄。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e67/5061772/d9e4611e0729/fmicb-07-01636-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验