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预测的RAG2 Kelch重复序列保守区域的突变会阻断V(D)J重组的起始,并导致原发性免疫缺陷。

Mutations in conserved regions of the predicted RAG2 kelch repeats block initiation of V(D)J recombination and result in primary immunodeficiencies.

作者信息

Gomez C A, Ptaszek L M, Villa A, Bozzi F, Sobacchi C, Brooks E G, Notarangelo L D, Spanopoulou E, Pan Z Q, Vezzoni P, Cortes P, Santagata S

机构信息

Ruttenberg Cancer Center, Mount Sinai School of Medicine of New York University, New York, New York 10029, USA.

出版信息

Mol Cell Biol. 2000 Aug;20(15):5653-64. doi: 10.1128/MCB.20.15.5653-5664.2000.

Abstract

The V(D)J recombination reaction is composed of multiple nucleolytic processing steps mediated by the recombination-activating proteins RAG1 and RAG2. Sequence analysis has suggested that RAG2 contains six kelch repeat motifs that are predicted to form a six-bladed beta-propeller structure, with the second beta-strand of each repeat demonstrating marked conservation both within and between kelch repeat-containing proteins. Here we demonstrate that mutations G95R and DeltaI273 within the predicted second beta-strand of repeats 2 and 5 of RAG2 lead to immunodeficiency in patients P1 and P2. Green fluorescent protein fusions with the mutant proteins reveal appropriate localization to the nucleus. However, both mutations reduce the capacity of RAG2 to interact with RAG1 and block recombination signal cleavage, therefore implicating a defect in the early steps of the recombination reaction as the basis of the clinical phenotype. The present experiments, performed with an extensive panel of site-directed mutations within each of the six kelch motifs, further support the critical role of both hydrophobic and glycine-rich regions within the second beta-strand for RAG1-RAG2 interaction and recombination signal recognition and cleavage. In contrast, multiple mutations within the variable-loop regions of the kelch repeats had either mild or no effects on RAG1-RAG2 interaction and hence on the ability to mediate recombination. In all, the data demonstrate a critical role of the RAG2 kelch repeats for V(D)J recombination and highlight the importance of the conserved elements of the kelch motif.

摘要

V(D)J重组反应由重组激活蛋白RAG1和RAG2介导的多个核酸裂解加工步骤组成。序列分析表明,RAG2包含六个kelch重复基序,预计形成一个六叶β-螺旋桨结构,每个重复的第二条β链在含kelch重复的蛋白质内部和之间都表现出显著的保守性。在此,我们证明RAG2重复序列2和5预测的第二条β链中的G95R和ΔI273突变导致患者P1和P2出现免疫缺陷。突变蛋白与绿色荧光蛋白的融合显示其在细胞核中有适当的定位。然而,这两种突变都降低了RAG2与RAG1相互作用的能力,并阻断了重组信号的切割,因此表明重组反应早期步骤的缺陷是临床表型的基础。本实验对六个kelch基序中的每一个进行了广泛的定点突变,进一步支持了第二条β链中疏水和富含甘氨酸区域对RAG1-RAG2相互作用以及重组信号识别和切割的关键作用。相比之下,kelch重复序列可变环区域内的多个突变对RAG1-RAG2相互作用以及介导重组的能力要么有轻微影响,要么没有影响。总之,这些数据证明了RAG2的kelch重复序列在V(D)J重组中的关键作用,并突出了kelch基序保守元件的重要性。

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