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嘌呤核苷磷酸化酶使能双重代谢检查点,防止 T 细胞免疫缺陷和 TLR7 相关自身免疫。

Purine nucleoside phosphorylase enables dual metabolic checkpoints that prevent T cell immunodeficiency and TLR7-associated autoimmunity.

机构信息

Department of Molecular and Medical Pharmacology and.

Department of Surgery, UCLA, Los Angeles, California, USA.

出版信息

J Clin Invest. 2022 Aug 15;132(16). doi: 10.1172/JCI160852.

Abstract

Purine nucleoside phosphorylase (PNP) enables the breakdown and recycling of guanine nucleosides. PNP insufficiency in humans is paradoxically associated with both immunodeficiency and autoimmunity, but the mechanistic basis for these outcomes is incompletely understood. Here, we identify two immune lineage-dependent consequences of PNP inactivation dictated by distinct gene interactions. During T cell development, PNP inactivation is synthetically lethal with downregulation of the dNTP triphosphohydrolase SAMHD1. This interaction requires deoxycytidine kinase activity and is antagonized by microenvironmental deoxycytidine. In B lymphocytes and macrophages, PNP regulates Toll-like receptor 7 signaling by controlling the levels of its (deoxy)guanosine nucleoside ligands. Overriding this regulatory mechanism promotes germinal center formation in the absence of exogenous antigen and accelerates disease in a mouse model of autoimmunity. This work reveals that one purine metabolism gene protects against immunodeficiency and autoimmunity via independent mechanisms operating in distinct immune lineages and identifies PNP as a potentially novel metabolic immune checkpoint.

摘要

嘌呤核苷磷酸化酶(PNP)能够分解和回收鸟嘌呤核苷。人类 PNP 不足与免疫缺陷和自身免疫都有关联,但这些结果的机制基础尚不完全清楚。在这里,我们发现 PNP 失活有两种免疫谱系依赖性的后果,这是由不同的基因相互作用决定的。在 T 细胞发育过程中,PNP 失活与 dNTP 三磷酸水解酶 SAMHD1 的下调呈合成致死性。这种相互作用需要脱氧胞苷激酶的活性,并且被微环境中的脱氧胞苷所拮抗。在 B 淋巴细胞和巨噬细胞中,PNP 通过控制其(脱氧)鸟苷核苷配体的水平来调节 Toll 样受体 7 信号。绕过这种调节机制可促进生发中心在没有外源抗原的情况下形成,并加速自身免疫小鼠模型中的疾病进展。这项工作揭示了一个嘌呤代谢基因通过在不同免疫谱系中发挥作用的独立机制来预防免疫缺陷和自身免疫,并将 PNP 确定为一种潜在的新型代谢免疫检查点。

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