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载脂蛋白B编辑复合体2晶体结构及其对脱氨酶激活诱导胞嘧啶脱氨酶的功能影响

The APOBEC-2 crystal structure and functional implications for the deaminase AID.

作者信息

Prochnow Courtney, Bransteitter Ronda, Klein Michael G, Goodman Myron F, Chen Xiaojiang S

机构信息

Molecular and Computational Biology, University of Southern California Los Angeles, California 90089, USA.

出版信息

Nature. 2007 Jan 25;445(7126):447-51. doi: 10.1038/nature05492. Epub 2006 Dec 24.

Abstract

APOBEC-2 (APO2) belongs to the family of apolipoprotein B messenger RNA-editing enzyme catalytic (APOBEC) polypeptides, which deaminates mRNA and single-stranded DNA. Different APOBEC members use the same deamination activity to achieve diverse human biological functions. Deamination by an APOBEC protein called activation-induced cytidine deaminase (AID) is critical for generating high-affinity antibodies, and deamination by APOBEC-3 proteins can inhibit retrotransposons and the replication of retroviruses such as human immunodeficiency virus and hepatitis B virus. Here we report the crystal structure of APO2. APO2 forms a rod-shaped tetramer that differs markedly from the square-shaped tetramer of the free nucleotide cytidine deaminase, with which APOBEC proteins share considerable sequence homology. In APO2, two long alpha-helices of a monomer structure prevent the formation of a square-shaped tetramer and facilitate formation of the rod-shaped tetramer via head-to-head interactions of two APO2 dimers. Extensive sequence homology among APOBEC family members allows us to test APO2 structure-based predictions using AID. We show that AID deamination activity is impaired by mutations predicted to interfere with oligomerization and substrate access. The structure suggests how mutations in patients with hyper-IgM-2 syndrome inactivate AID, resulting in defective antibody maturation.

摘要

载脂蛋白B信使核糖核酸编辑酶催化多肽(APOBEC)家族中的载脂蛋白B编辑催化成分2(APO2)能够使信使核糖核酸(mRNA)和单链脱氧核糖核酸(DNA)发生脱氨基作用。不同的APOBEC家族成员利用相同的脱氨基活性实现多种人类生物学功能。一种名为活化诱导胞嘧啶脱氨酶(AID)的APOBEC蛋白所介导的脱氨基作用对于产生高亲和力抗体至关重要,而APOBEC-3蛋白所介导的脱氨基作用则可以抑制逆转座子以及人类免疫缺陷病毒和乙型肝炎病毒等逆转录病毒的复制。在此,我们报道了APO2的晶体结构。APO2形成一种棒状四聚体,这与游离核苷酸胞嘧啶脱氨酶的方形四聚体明显不同,APOBEC蛋白与游离核苷酸胞嘧啶脱氨酶具有相当多的序列同源性。在APO2中,单体结构的两条长α螺旋阻止了方形四聚体的形成,并通过两个APO2二聚体的头对头相互作用促进了棒状四聚体的形成。APOBEC家族成员之间广泛的序列同源性使我们能够利用AID来检验基于APO2结构的预测。我们发现,预测会干扰寡聚化和底物进入的突变会损害AID的脱氨基活性。该结构揭示了高IgM综合征2型患者的突变如何使AID失活,从而导致抗体成熟缺陷。

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