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嘌呤代谢的免疫学方面。

Immunological aspects of purine metabolism.

作者信息

Seegmiller J E, Watanabe T, Shreier M H, Waldmann T A

出版信息

Adv Exp Med Biol. 1977;76A:412-33. doi: 10.1007/978-1-4613-4223-6_53.

Abstract

The development of our knowledge of the immune system has been reviewed and evidence presented of the need for a rapid rate of purine synthesis de novo for the proliferative events in this process. The mechanism of the inhibition of the immune system in a model of ADA deficiency has been studied intensively and considerable indirect evidence obtained of adenosine toxicity as a possible mediator of a reversible inhibition of proliferation of T-cells and to a slightly lesser extent B-cells. A secondary inhibition of ADA by inosine accumulation in PNP deficiency is proposed as a unifying hypothesis in which a somewhat lesser adenosine toxicity would inhibit proliferation only only of T-cells. The correction of the immune response by addition of ADA both in vitro and in vivo provides strong evidence in favor of this view. In HPRT deficiency no evidence was found of a gross impairment of the immune system; however, the HPRT enzyme is required for inhibition of the immune response by 6MP in a variety of systems using different mitogenic stimuli.

摘要

我们对免疫系统的认识发展已得到回顾,并提出证据表明在此过程中的增殖事件需要快速从头合成嘌呤。在腺苷脱氨酶(ADA)缺乏模型中免疫系统抑制机制已得到深入研究,并获得了大量间接证据,表明腺苷毒性可能是T细胞增殖可逆抑制的介质,对B细胞增殖的抑制作用稍小。有人提出,在嘌呤核苷磷酸化酶(PNP)缺乏时,肌苷积累对ADA的继发性抑制是一个统一的假说,其中程度稍轻的腺苷毒性仅抑制T细胞的增殖。在体外和体内添加ADA对免疫反应的纠正提供了有力证据支持这一观点。在次黄嘌呤-鸟嘌呤磷酸核糖转移酶(HPRT)缺乏症中,未发现免疫系统有明显损害的证据;然而,在使用不同促有丝分裂刺激的各种系统中,6-巯基嘌呤(6MP)抑制免疫反应需要HPRT酶。

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