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C1s基因纯合四碱基缺失导致的选择性补体C1s缺乏症。

Selective complement C1s deficiency caused by homozygous four-base deletion in the C1s gene.

作者信息

Inoue N, Saito T, Masuda R, Suzuki Y, Ohtomi M, Sakiyama H

机构信息

Division of Biology and Oncology, National Institute of Radiological Sciences, Chiba, Japan.

出版信息

Hum Genet. 1998 Oct;103(4):415-8. doi: 10.1007/s004390050843.

Abstract

The complement system plays an important role in defense mechanisms by promoting the adherence of microorganisms to phagocytic cells and lysis of foreign organisms. Deficiencies of the first complement components, C1r/C1s, often cause systemic lupus erythematosus-like syndromes and severe pyogenic infections. Up to now no genetic analysis of the C1r/C1s deficiencies has been carried out. In the present work, we report the first genetic analysis of selective C1s deficiency, the patient having a normal amount of C1r. C1s RNA with a normal size was detected in patient's subcutaneous fibroblasts (YKF) by RNA blot analysis and RT-PCR. The amount of C1s RNA was approximately one-tenth of the RNA from the human chondrosarcoma cell line, HCS2/8. In contrast, the levels of C1r and beta-actin RNA of YKF were similar to that of HCS2/8. Sequence analysis of C1s cDNA revealed a deletion at nucleotides 1087-1090 (TTTG), creating a stop codon (TGA) at position 94 downstream of the mutation site. Direct sequencing of the gene between the primers designed on intron 9 and exon 10 indicated the presence of the deletion on exon 10 of the gene. Quantitative Southern blot hybridization suggested the mutation was homozygous. The 4-bp deletion on exon 10 was also found in the patient's heterozygous mother who had normal hemolytic activity.

摘要

补体系统通过促进微生物与吞噬细胞的黏附以及对外来生物体的溶解,在防御机制中发挥重要作用。第一补体成分C1r/C1s的缺陷常导致系统性红斑狼疮样综合征和严重的化脓性感染。到目前为止,尚未对C1r/C1s缺陷进行基因分析。在本研究中,我们报告了首例选择性C1s缺陷的基因分析,该患者C1r含量正常。通过RNA印迹分析和逆转录-聚合酶链反应(RT-PCR)在患者的皮下成纤维细胞(YKF)中检测到大小正常的C1s RNA。C1s RNA的量约为人软骨肉瘤细胞系HCS2/8 RNA的十分之一。相比之下,YKF的C1r和β-肌动蛋白RNA水平与HCS2/8相似。C1s cDNA的序列分析显示在核苷酸1087 - 1090(TTTG)处有一个缺失,在突变位点下游94位产生了一个终止密码子(TGA)。对在第9内含子和第10外显子上设计的引物之间的基因进行直接测序表明该基因的第10外显子存在缺失。定量Southern印迹杂交表明该突变是纯合的。在具有正常溶血活性的患者杂合子母亲中也发现了第10外显子上的4个碱基缺失。

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