Sawada Akihisa, Takihara Yoshihiro, Kim Ji Yoo, Matsuda-Hashii Yoshiko, Tokimasa Sadao, Fujisaki Hiroyuki, Kubota Keiko, Endo Hiroko, Onodera Takashi, Ohta Hideaki, Ozono Keiichi, Hara Junichi
Department of Developmental Medicine (Pediatrics), Osaka University Graduate School of Medicine, 2-2, Yamadaoka, Suita, Osaka 565-0871, Japan.
J Clin Invest. 2003 Dec;112(11):1707-13. doi: 10.1172/JCI18937.
A girl with congenital agammaglobulinemia and minor facial anomalies lacked B cells in peripheral blood: karyotypic analysis of white blood cells showed balanced translocation, t(9;20)(q33.2;q12). In the current study, we isolated a novel gene, leucine-rich repeat-containing 8 (LRRC8), at the translocation site on chromosome 9. It has four transmembrane helices with one isolated and eight sequentially located leucine-rich repeats (LRRs) and constitutes a new protein family. It is expressed on T cells as well as on B-lineage cells. Translocation truncates the LRRC8 gene, resulting in deletion of the eighth, ninth, and half of the seventh LRR domains located close to the C-terminal. The truncated form of the LRRC8 gene is transcribed with sequences from the noncoding region adjacent to the truncated seventh LRR. Protein products derived from the truncated gene are coexpressed on white blood cells with the intact LRRC8 protein from the untranslocated allele. Transplantation experiments with murine bone marrow cells that were forced to express the truncated LRRC8 show that expression of the truncated protein inhibited B cell development. These results indicate that LRRC8 is responsible for the B cell deficiency in this patient and is required for B cell development.
一名患有先天性无丙种球蛋白血症且面部有轻微异常的女孩外周血中缺乏B细胞:白细胞的核型分析显示平衡易位,t(9;20)(q33.2;q12)。在本研究中,我们在9号染色体的易位位点分离出一个新基因,富含亮氨酸重复序列8(LRRC8)。它有四个跨膜螺旋,一个孤立的和八个连续排列的富含亮氨酸重复序列(LRR),并构成一个新的蛋白质家族。它在T细胞以及B系细胞上表达。易位使LRRC8基因截短,导致靠近C端的第八、第九和第七个LRR结构域的一半缺失。截短形式的LRRC8基因与截短的第七个LRR相邻的非编码区序列一起转录。截短基因产生的蛋白质产物与未易位等位基因的完整LRRC8蛋白在白细胞上共同表达。对被迫表达截短型LRRC8的小鼠骨髓细胞进行的移植实验表明,截短蛋白的表达抑制了B细胞的发育。这些结果表明,LRRC8是该患者B细胞缺陷的原因,并且是B细胞发育所必需的。