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Rag1-/- 突变型斑马鱼在再次接触细菌后表现出特定的保护作用。

Rag1-/- mutant zebrafish demonstrate specific protection following bacterial re-exposure.

机构信息

Department of Basic Sciences, College of Veterinary Medicine, Mississippi State University, Mississippi State, Starkville, Mississippi, United States of America.

出版信息

PLoS One. 2012;7(9):e44451. doi: 10.1371/journal.pone.0044451. Epub 2012 Sep 6.

Abstract

BACKGROUND

Recombination activation gene 1 deficient (rag1(-/-)) mutant zebrafish have a reduced lymphocyte-like cell population that lacks functional B and T lymphocytes of the acquired immune system, but includes Natural Killer (NK)-like cells and Non-specific cytotoxic cells (NCC) of the innate immune system. The innate immune system is thought to lack the adaptive characteristics of an acquired immune system that provide enhanced protection to a second exposure of the same pathogen. It has been shown that NK cells have the ability to mediate adaptive immunity to chemical haptens and cytomegalovirus in murine models. In this study we evaluated the ability of rag1(-/-) mutant zebrafish to mount a protective response to the facultative intracellular fish bacterium Edwardsiella ictaluri.

METHODOLOGY/PRINCIPAL FINDINGS: Following secondary challenge with a lethal dose of homologous bacteria 4 and 8 weeks after a primary vaccination, rag1(-/-) mutant zebrafish demonstrated protective immunity. Heterologous bacterial exposures did not provide protection. Adoptive leukocyte transfers from previously exposed mutants conferred protective immunity to naïve mutants when exposed to homologous bacteria.

CONCLUSIONS/SIGNIFICANCE: Our findings show that a component of the innate immune system mounted a response that provided significantly increased survival when rag1(-/-) mutant zebrafish were re-exposed to the same bacteria. Further, adoptive cell transfers demonstrated that kidney interstitial leukocytes from previously exposed rag1(-/-) mutant zebrafish transferred this protective immunity. This is the first report of any rag1(-/-) mutant vertebrate mounting a protective secondary immune response to a bacterial pathogen, and demonstrates that a type of zebrafish innate immune cell can mediate adaptive immunity in the absence of T and B cells.

摘要

背景

重组激活基因 1 缺陷(rag1(-/-))突变斑马鱼的淋巴细胞样细胞群减少,缺乏获得性免疫系统的功能性 B 和 T 淋巴细胞,但包括先天免疫系统的自然杀伤(NK)样细胞和非特异性细胞毒性细胞(NCC)。先天免疫系统被认为缺乏获得性免疫系统的适应性特征,后者为同一病原体的第二次暴露提供增强的保护。已经表明,NK 细胞具有在鼠模型中对化学半抗原和巨细胞病毒进行适应性免疫的能力。在这项研究中,我们评估了 rag1(-/-)突变斑马鱼对兼性胞内鱼类病原体爱德华氏菌的保护性反应的能力。

方法/主要发现:在初次接种后 4 周和 8 周进行同源细菌的二次致死剂量挑战后,rag1(-/-)突变斑马鱼表现出保护性免疫。异源细菌暴露不能提供保护。将先前暴露的突变体的适应性白细胞转移到未暴露的突变体中,当暴露于同源细菌时,可赋予它们保护性免疫。

结论/意义:我们的发现表明,先天免疫系统的一个组成部分在 rag1(-/-)突变斑马鱼再次暴露于相同细菌时,会引发显著增加存活率的反应。此外,适应性细胞转移表明,来自先前暴露的 rag1(-/-)突变斑马鱼的肾脏间质白细胞转移了这种保护性免疫。这是首次报道任何 rag1(-/-)突变脊椎动物对细菌病原体产生保护性二次免疫反应,并表明一种斑马鱼先天免疫细胞可以在没有 T 和 B 细胞的情况下介导适应性免疫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82de/3435260/fd5ddec08e39/pone.0044451.g001.jpg

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