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首页> 外文期刊>BMC Immunology >Gallin; an antimicrobial peptide member of a new avian defensin family, the ovodefensins, has been subject to recent gene duplication
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Gallin; an antimicrobial peptide member of a new avian defensin family, the ovodefensins, has been subject to recent gene duplication

机译:加林一个新的禽防卫素家族的抗菌肽,即卵防卫素,最近遭受了基因复制

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摘要

Background Egg white must provide nutrients and protection to the developing avian embryo. One way in which this is achieved is an arsenal of antimicrobial proteins and peptides which are essentially extensions of the innate immune system. Gallin is a recently identified member of a family of peptides that are found in egg white. The function of this peptide family has not been identified and they are potentially antimicrobial. Results We have confirmed that there are at least 3 forms of the gallin gene in the chicken genome in 3 separate lines of chicken, all the forms are expressed in the tubular cells of the magnum region of the oviduct, consistent with its presence in egg white. mRNA expression levels are in the order 10,000 times greater in the magnum than the shell gland. The conservation between the multiple forms of gallin in the chicken genome compared with the conservation between gallin and other avian gallin like peptides, suggests that the gene duplication has occurred relatively recently in the chicken lineage. The gallin peptide family contains a six cysteine motif (C-X5-C-X3-C-X11-C-X3-C-C) found in all defensins, and is most closely related to avian beta-defensins, although the cysteine spacing differs. Further support for the classification comes from the presence of a glycine at position 10 in the 41 amino acid peptide. Recombinant gallin inhibited the growth of Escherischia coli (E. coli) at a concentration of 0.25 μM confirming it as part of the antimicrobial innate immune system in avian species. Conclusions The relatively recent evolution of multiple forms of a member of a new defensin related group of peptides that we have termed ovodefensins, may be an adaptation to increase expression or the first steps in divergent evolution of the gene in chickens. The potent antimicrobial activity of the peptide against E. coli increases our understanding of the antimicrobial strategies of the avian innate immune system particularly those of the egg white and the evolution of the defensin family. The potential of this peptide and others in the family can now be investigated in a number of novel antimicrobial roles.
机译:背景蛋清必须为发育中的鸟类胚胎提供营养和保护。实现此目的的一种方式是本质上是先天免疫系统的扩展的抗微生物蛋白质和肽的库。 Gallin是蛋白中发现的一种肽家族的新成员。该肽家族的功能尚未确定,可能具有抗菌作用。结果我们已经证实,在鸡的3个不同品系中,鸡基因组中至少有3种Gallin基因形式,所有形式均在输卵管大细胞区的肾小管细胞中表达,与它在蛋清中的存在一致。大瓶中的mRNA表达水平比壳腺大10,000倍。鸡基因组中多种形式的鸡精之间的保守性与鸡精和其他禽类鸡精肽之间的保守性相比,表明基因复制在鸡谱系中相对较新。 Gallin肽家族包含六个半胱氨酸基序(CX 5 -CX 3 -CX 11 -CX 3 - CC)存在于所有防御素中,并且与禽类β-防御素关系最密切,尽管半胱氨酸间距不同。对分类的进一步支持来自41个氨基酸肽段中第10位的甘氨酸的存在。重组加仑以0.25μM的浓度抑制了大肠杆菌(E. coli)的生长,证实了它是禽类抗菌先天免疫系统的一部分。结论我们将新的防御素相关肽组成员的多种形式的相对较近的进化(我们称为卵防御素)进行了适应,可以提高鸡的表达或基因差异进化的第一步。该肽对大肠杆菌的有效抗菌活性使我们对禽类先天免疫系统的抗菌策略,特别是蛋清的抗菌策略和防御素家族的进化有了更深入的了解。现在可以通过许多新的抗菌作用来研究该肽及其家族中其他肽的潜力。

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