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一种新型突变揭示了 HMGB1/2 在 V(D)J 重组过程中的关键体内作用。

A novel mutation reveals a critical in vivo role for HMGB1/2 during V(D)J recombination.

机构信息

School of Molecular and Cellular Biology, University of Leeds, Leeds, United Kingdom; and.

Department of Clinical Immunology and Allergy and.

出版信息

Blood. 2019 Feb 21;133(8):820-829. doi: 10.1182/blood-2018-07-866939. Epub 2018 Dec 11.

Abstract

The Recombination Activating Genes, and , are essential for V(D)J recombination and adaptive immunity. Mutations in these genes often cause immunodeficiency, the severity of which reflects the importance of the altered residue or residues during recombination. Here, we describe a novel mutation that causes immunodeficiency in an unexpected way: The mutated protein severely disrupts binding of the accessory protein, HMGB1. Although HMGB1 enhances RAG cutting in vitro, its role in vivo was controversial. We show here that reduced HMGB1 binding by the mutant protein dramatically reduces RAG cutting in vitro and almost completely eliminates recombination in vivo. The RAG1 mutation, R401W, places a bulky tryptophan opposite the binding site for HMG Box A at both 12- and 23-spacer recombination signal sequences, disrupting stable binding of HMGB1. Replacement of R401W with leucine and then lysine progressively restores HMGB1 binding, correlating with increased RAG cutting and recombination in vivo. We show further that knockdown of HMGB1 significantly reduces recombination by wild-type RAG1, whereas its re-addition restores recombination with wild-type, but not the mutant, RAG1 protein. Together, these data provide compelling evidence that HMGB1 plays a critical role during V(D)J recombination in vivo.

摘要

重组激活基因 1 和 2 对于 V(D)J 重组和适应性免疫至关重要。这些基因的突变常导致免疫缺陷,其严重程度反映了在重组过程中改变残基或残基的重要性。在这里,我们描述了一种新的突变,它以一种意想不到的方式导致免疫缺陷:突变蛋白严重破坏了辅助蛋白 HMGB1 的结合。虽然 HMGB1 在体外增强了 RAG 的切割,但它在体内的作用存在争议。我们在这里表明,突变蛋白与 HMGB1 的结合减少,大大降低了体外 RAG 的切割,并几乎完全消除了体内的重组。RAG1 突变 R401W 在 12-和 23-间隔重组信号序列的 HMG 盒 A 结合位点对面放置了一个庞大的色氨酸,破坏了 HMGB1 的稳定结合。用亮氨酸和赖氨酸替代 R401W 逐渐恢复了 HMGB1 的结合,与体内 RAG 的切割和重组增加相关。我们进一步表明,HMGB1 的敲低显著降低了野生型 RAG1 的重组,而其再添加恢复了与野生型但不是突变型 RAG1 蛋白的重组。这些数据提供了令人信服的证据,表明 HMGB1 在体内 V(D)J 重组过程中发挥着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e400/6450058/e96f51183757/blood866939absf1.jpg

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