A bioinformatic analysis of zinc transporters in intestinal Lactobacillaceae.

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Metallomics Pub Date : 2023-08-01 DOI:10.1093/mtomcs/mfad044
Uyen Huynh, Hazel N Nguyen, Brittany K Trinh, Joanna Elhaj, Melissa L Zastrow
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Abstract

As the second most abundant transition element and a crucial cofactor for many proteins, zinc is essential for the survival of all living organisms. To maintain required zinc levels and prevent toxic overload, cells and organisms have a collection of metal transport proteins for uptake and efflux of zinc. In bacteria, metal transport proteins are well defined for model organisms and many pathogens, but fewer studies have explored metal transport proteins, including those for zinc, in commensal bacteria from the gut microbiota. The healthy human gut microbiota comprises hundreds of species and among these, bacteria from the Lactobacillaceae family are well documented to have various beneficial effects on health. Furthermore, changes in dietary metal intake, such as for zinc and iron, are frequently correlated with changes in abundance of Lactobacillaceae. Few studies have explored zinc requirements and zinc homeostasis mechanisms in Lactobacillaceae, however. Here we applied a bioinformatics approach to identify and compare predicted zinc uptake and efflux proteins in several Lactobacillaceae genera of intestinal relevance. Few Lactobacillaceae had zinc transporters currently annotated in proteomes retrieved from the UniProt database, but protein sequence-based homology searches revealed that high-affinity ABC transporter genes are likely common, albeit with genus-specific domain features. P-type ATPase transporters are probably also common and some Lactobacillaceae genera code for predicted zinc efflux cation diffusion facilitators. This analysis confirms that Lactobacillaceae harbor genes for various zinc transporter homologs, and provides a foundation for systematic experimental studies to elucidate zinc homeostasis mechanisms in these bacteria.

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肠道乳酸杆菌科锌转运蛋白的生物信息学分析。
作为第二丰富的过渡元素和许多蛋白质的重要辅助因子,锌对所有生物的生存至关重要。为了维持所需的锌水平和防止毒性超载,细胞和生物体有一组金属运输蛋白来吸收和排出锌。在细菌中,金属转运蛋白在模式生物和许多病原体中都有很好的定义,但很少有研究探索来自肠道微生物群的共生细菌中的金属转运蛋白,包括锌转运蛋白。健康的人体肠道微生物群包括数百种,其中乳酸菌科的细菌被充分证明对健康有各种有益的影响。此外,饮食中金属摄入量的变化,如锌和铁,经常与乳酸杆菌科丰度的变化相关。然而,很少有研究探讨乳酸杆菌科植物的锌需求和锌稳态机制。在这里,我们应用了生物信息学方法来鉴定和比较几种与肠道相关的乳酸杆菌科属的预测锌摄取和外排蛋白。目前从UniProt数据库中检索到的蛋白质组中很少有乳酸杆菌科的锌转运蛋白,但基于蛋白质序列的同源性搜索显示,尽管具有属特异性结构域特征,但高亲和力的ABC转运蛋白基因可能是常见的。p型atp酶转运蛋白可能也很常见,一些乳酸菌属编码预测的锌外排阳离子扩散促进因子。这一分析证实了乳酸杆菌科存在多种锌转运蛋白同源基因,为系统的实验研究阐明这些细菌的锌稳态机制提供了基础。
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来源期刊
Metallomics
Metallomics 生物-生化与分子生物学
CiteScore
7.00
自引率
5.90%
发文量
87
审稿时长
1 months
期刊介绍: Global approaches to metals in the biosciences
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