How prevalent are lactoferrin receptors in Gram-negative bacteria?

IF 2.4 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Nikolas F Ewasechko, David M Curran, Ken Yu Khaw, Anthony B Schryvers
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引用次数: 0

Abstract

Surface receptors in Gram-negative bacteria that bind and extract iron from the host glycoproteins transferrin (Tf) or lactoferrin (Lf) was discovered 35 years ago in pathogenic Neisseria species and subsequently was discovered in other pathogens of humans and food production animals. These bacterial species reside exclusively on the mucosal surfaces of the respiratory or genitourinary tract of their mammalian host and rely on their host specific Tf and Lf receptors to acquire iron for survival. Since the specificity of the bacterial Tf receptors was shown to be due to selective pressures on the host Tf, their presence in bacteria that reside in both mammals and birds indicates that they arose over 320 million years ago. Once Lf arose in mammals due to a gene duplication event, Lf receptors subsequently arose from Tf receptors. The focus on pathogens for discovery of these receptors has led to a limited understanding of how prevalent the Tf and Lf receptors are in commensal species and raises the question whether they are present in additional bacterial lineages. Since the Lf receptor provides a secondary iron acquisition system plus can provide protection from cationic peptides its presence varies in bacterial lineages.

乳铁蛋白受体在革兰氏阴性菌中有多普遍?
革兰氏阴性菌中结合并从宿主糖蛋白转铁蛋白(Tf)或乳铁蛋白(Lf)中提取铁的表面受体是35年前在致病性奈瑟菌中发现的,随后在人类和食品生产动物的其他病原体中也被发现。这些细菌只存在于哺乳动物宿主的呼吸道或泌尿生殖道粘膜表面,依靠宿主特异性Tf和Lf受体获取铁来生存。由于细菌Tf受体的特异性被证明是由于宿主Tf的选择压力,它们在哺乳动物和鸟类细菌中的存在表明它们在3.2亿年前就出现了。一旦在哺乳动物中由于基因复制事件产生Lf, Lf受体随后从Tf受体产生。关注病原体以发现这些受体,导致对Tf和Lf受体在共生物种中的普遍程度的理解有限,并提出了它们是否存在于其他细菌谱系的问题。由于Lf受体提供了二级铁获取系统,并且可以提供对阳离子肽的保护,因此它的存在在细菌谱系中是不同的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biochemistry and Cell Biology
Biochemistry and Cell Biology 生物-生化与分子生物学
CiteScore
6.30
自引率
0.00%
发文量
50
审稿时长
6-12 weeks
期刊介绍: Published since 1929, Biochemistry and Cell Biology explores every aspect of general biochemistry and includes up-to-date coverage of experimental research into cellular and molecular biology in eukaryotes, as well as review articles on topics of current interest and notes contributed by recognized international experts. Special issues each year are dedicated to expanding new areas of research in biochemistry and cell biology.
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