Hardianti M S, Tatsumi E, Syampurnawati M, Furuta K, Saigo K, Nakamachi Y, Kumagai S, Ohno H, Tanabe S, Uchida M, Yasuda N
International Center for Medical Research (ICMR), Graduate School of Medicine, Kobe University, Kobe, Japan.
Leukemia. 2004 Apr;18(4):826-31. doi: 10.1038/sj.leu.2403323.
Activation-induced cytidine deaminase (AID) is required for somatic hypermutation (SHM) and class switch recombination (CSR) of the immunoglobulin (Ig) gene. AID has been reported to be specifically expressed in the germinal center (GC). Follicular lymphoma (FL) cells are known to be exposed to GC reaction, as characterized by a high degree of SHM with some heterogeneity in terms of intraclonal microheterogeneity and antigen selection. The heterogeneity of SHM pattern in FL intrigued us to investigate the AID expression. AID expression was investigated in 19 FL materials consisting of 15 cases of FL fresh cells and four cell lines. In all, 10 fresh cells and three cell lines expressed AID, but the others did not. SHM was investigated in 12 fresh cells and four cell lines. The ongoing mutation was significantly different between AID-positive and AID-negative FL fresh cells (unpaired Student's t-test, P=0.047). Ongoing mutation was not seen in any of the cell lines. AID expression was associated with the ongoing mutation in FL fresh cells (two-tailed Pearson's coefficient correlation, r=0.899, P=0.01). The switch off of AID expression may start in the B-lineage differentiation stage counterpart of FL after optimizing SHM, indicated by the cessation of the ongoing mutation in AID-negative FL fresh cells.
活化诱导的胞苷脱氨酶(AID)是免疫球蛋白(Ig)基因体细胞超突变(SHM)和类别转换重组(CSR)所必需的。据报道,AID在生发中心(GC)中特异性表达。滤泡性淋巴瘤(FL)细胞已知会经历GC反应,其特征是高度的SHM,在克隆内微异质性和抗原选择方面存在一些异质性。FL中SHM模式的异质性促使我们研究AID的表达。在由15例FL新鲜细胞和4个细胞系组成的19份FL材料中研究了AID的表达。总共,10个新鲜细胞和3个细胞系表达AID,而其他的则不表达。在12个新鲜细胞和4个细胞系中研究了SHM。AID阳性和AID阴性的FL新鲜细胞之间正在进行的突变有显著差异(未配对学生t检验,P = 0.047)。在任何细胞系中均未观察到正在进行的突变。AID表达与FL新鲜细胞中的正在进行的突变相关(双尾Pearson系数相关性,r = 0.899,P = 0.01)。AID阴性的FL新鲜细胞中正在进行的突变停止表明,在优化SHM后,AID表达的关闭可能在FL的B细胞谱系分化阶段开始。