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变温脊椎动物补体系统的进化与多样性

Evolution and diversity of the complement system of poikilothermic vertebrates.

作者信息

Sunyer J O, Lambris J D

机构信息

Department of Pathology and Laboratory Medicine, University of Pennsylvania, Philadelphia, USA.

出版信息

Immunol Rev. 1998 Dec;166:39-57. doi: 10.1111/j.1600-065x.1998.tb01251.x.

Abstract

In mammals the complement system plays an important role in innate and acquired host defense mechanisms against infection and in various immunoregulatory processes. The complement system is an ancient defense mechanism that is already present in the invertebrate deuterostomes. In these species as well as in agnathans (the most primitive vertebrate species), both the alternative and lectin pathway of complement activation are already present, and the complement system appears to be involved mainly in opsonization of foreign material. With the emergence of immunoglobulins in cartilaginous fish, the classical and lytic pathways first appear. The rest of the poikilothermic species, from teleosts to reptilians, appear to contain a well-developed complement system resembling that of homeothermic vertebrates. However, important differences remain. Unlike homeotherms, several species of poikilotherms have recently been shown to possess multiple forms of complement components (C3 and factor B) that are structurally and functionally more diverse than those of higher vertebrates. It is noteworthy that the multiple forms of C3 that have been characterized in several teleost fish are able to bind with varying efficiencies to various complement-activating surfaces. We hypothesize that this diversity has allowed these animals to expand their innate capacity for immune recognition.

摘要

在哺乳动物中,补体系统在宿主针对感染的天然和后天防御机制以及各种免疫调节过程中发挥着重要作用。补体系统是一种古老的防御机制,在无脊椎动物后口动物中就已存在。在这些物种以及无颌类动物(最原始的脊椎动物物种)中,补体激活的替代途径和凝集素途径都已存在,并且补体系统似乎主要参与异物的调理作用。随着软骨鱼类中免疫球蛋白的出现,经典途径和溶解途径首次出现。其余的变温动物物种,从硬骨鱼到爬行动物,似乎都拥有一个发育良好的补体系统,类似于恒温脊椎动物的补体系统。然而,重要的差异仍然存在。与恒温动物不同,最近已证明几种变温动物物种拥有多种形式的补体成分(C3和B因子),其结构和功能比高等脊椎动物的更为多样。值得注意的是,在几种硬骨鱼中已鉴定出的多种形式的C3能够以不同的效率与各种补体激活表面结合。我们推测这种多样性使这些动物能够扩展其天然的免疫识别能力。

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