A bioinformatic analysis of zinc transporters in intestinal Lactobacillaceae

被引:2
|
作者
Huynh, Uyen [1 ]
Nguyen, Hazel N. [1 ]
Trinh, Brittany K. [1 ]
Elhaj, Joanna [1 ]
Zastrow, Melissa L. [1 ,2 ]
机构
[1] Univ Houston, Dept Chem, Houston, TX 77204 USA
[2] Univ Houston, Dept Chem, 3585 Cullen Blvd,Rm 112, Houston, TX 77204 USA
基金
美国国家卫生研究院;
关键词
zinc; zinc transporters; microbiota; zinc homeostasis; Lactobacillaceae bacteria; metalloproteome; LACTIC-ACID BACTERIA; CPX-TYPE ATPASES; ESCHERICHIA-COLI; OXIDATIVE STRESS; UPTAKE SYSTEM; METAL RESISTANCE; ZNTA GENE; IRON; MANGANESE; HOMEOSTASIS;
D O I
10.1093/mtomcs/mfad044
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
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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收藏
页数:16
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