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模式益生菌物种三种小热休克蛋白的分子伴侣功能。

Molecular chaperone function of three small heat-shock proteins from a model probiotic species.

机构信息

Department of Clinical and Experimental Medicine, University of Foggia, Via Pinto 1, 71122, Foggia, Italy.

Univ. Bourgogne, Franche-Comté, AgroSup Dijon, PAM UMR A 02.102, Dijon, France.

出版信息

Cell Stress Chaperones. 2023 Jan;28(1):79-89. doi: 10.1007/s12192-022-01309-6. Epub 2022 Nov 22.

Abstract

Small heat-shock proteins (sHSP) are ubiquitous ATP-independent chaperones that prevent irreversible aggregation of heat-damaged denaturing proteins. Lactiplantibacillus plantarum is a widespread Gram-positive bacterium with probiotic claims and vast potential for agro-food, biotechnological and biomedical applications. L. plantarum possesses a family of three sHSP, which were previously demonstrated to be involved in its stress tolerance mechanisms. Here, the three L. plantarum sHSP were heterologously expressed, purified and shown to have a chaperone activity in vitro, measuring their capacity to suppress protein aggregation, as assayed spectrophotometrically by light scattering. Their anti-aggregative capacity was found to be differently influenced by pH. Differences were also found relative to their holdase function and their capacity to modulate liposome membrane fluidity, suggesting interplays between them and indicating diversified activities. This is the first study assessing the chaperone action of sHSP from a probiotic model. The different roles of the three sHSP can increase L. plantarum's capabilities to survive the various types of stress characterising the diverse habitats of this highly adaptable species. Reported evidence supports the interest in L. plantarum as one of the model species for bacteria that have three different sHSP-encoding genes in their genomes.

摘要

小分子热休克蛋白(sHSP)是普遍存在的、不依赖 ATP 的伴侣蛋白,可防止受热损伤变性的蛋白质发生不可逆聚集。植物乳杆菌是一种广泛存在的革兰氏阳性菌,具有益生菌特性,在农业食品、生物技术和生物医药领域有巨大的应用潜力。植物乳杆菌拥有一组三种 sHSP,先前的研究表明它们参与了其应激耐受机制。在这里,三种植物乳杆菌 sHSP 被异源表达、纯化,并在体外显示出具有伴侣活性,通过光散射分光光度法测量其抑制蛋白质聚集的能力。它们的抗聚集能力受 pH 值的不同影响。相对于它们的持留酶功能和调节脂质体膜流动性的能力也存在差异,这表明它们之间存在相互作用,并表明存在多样化的活性。这是首次评估益生菌模型中 sHSP 的伴侣活性的研究。三种 sHSP 的不同作用可以提高植物乳杆菌在其高度适应的物种多样化栖息地中各种类型的应激条件下生存的能力。有报道的证据支持将植物乳杆菌作为具有三种不同 sHSP 编码基因的细菌模型之一的兴趣。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8756/9877261/ca3f48bdc4b6/12192_2022_1309_Fig1_HTML.jpg

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