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遗传性血管性水肿患者重排的C1抑制剂基因中的重组偏倚。

Recombinational biases in the rearranged C1-inhibitor genes of hereditary angioedema patients.

作者信息

Stoppa-Lyonnet D, Duponchel C, Meo T, Laurent J, Carter P E, Arala-Chaves M, Cohen J H, Dewald G, Goetz J, Hauptmann G

机构信息

Unite' d'Immunogénétique et INSERM Unité 276, Institut Pasteur, France.

出版信息

Am J Hum Genet. 1991 Nov;49(5):1055-62.

Abstract

DNA structural changes responsible for hereditary angioedema were sought in the C1-inhibitor gene, which contains unusually dense clusters of Alu repeats in various orientations. Among patients belonging to 45 unrelated families, eight partial C1-inhibitor gene deletions and a partial duplication were found. Four deletions had one of the boundaries within the gene and the other in extragenic regions--in three cases 5' of the gene and in one case 3' of the gene. The boundaries of the partial duplication and of the remaining four deletions mapped instead within a few kilobases of exon 4. The same element--Alu 1--the first of three tandem Alu repeats preceding exon 4, contained one of the breakpoints of each of these five rearrangements. Moreover, these recombination breakpoints spread over the entire length of Alu 1, in contrast with the tight clustering observed near the 5' end of Alu sequences rearranged in other human genes. Thus, two uncommon recombinational biases are observed in the Alu rearrangements of hereditary angioedema patients; one promotes the occurrence of intragenic breakpoints in a single Alu repeat, and the other allows the breaks to be distributed over the entire Alu structure rather than within the hot spot of the left Alu monomer. A region of potential Z-DNA structure, located 1.7 kb upstream of Alu 1, may contribute to both peculiarities.

摘要

在C1抑制因子基因中寻找导致遗传性血管性水肿的DNA结构变化,该基因包含以各种方向排列的异常密集的Alu重复序列簇。在45个无关家族的患者中,发现了8个部分C1抑制因子基因缺失和1个部分重复。4个缺失的一个边界在基因内,另一个在基因外区域——3例在基因的5'端,1例在基因的3'端。部分重复和其余4个缺失的边界则位于外显子4的几千个碱基内。同一个元件——Alu 1——外显子4之前三个串联Alu重复序列中的第一个,包含了这五种重排中每一种的一个断点。此外,这些重组断点分布在Alu 1的整个长度上,这与在其他人类基因中重排的Alu序列5'端附近观察到的紧密聚类形成对比。因此,在遗传性血管性水肿患者的Alu重排中观察到两种不常见的重组偏向;一种促进单个Alu重复序列中基因内断点的出现,另一种使断点分布在整个Alu结构上,而不是在左侧Alu单体的热点内。位于Alu 1上游1.7 kb处的一个潜在Z-DNA结构区域可能导致了这两种特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0102/1683256/b4715cb93ed7/ajhg00082-0154-a.jpg

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