Liang J, Yan R, Chen G, Feng J, Wu W-W, Ren W, Zhu C, Zhao Y, Gao X-M, Wang J
Institutes of Biology and Medical Sciences, Soochow University, Suzhou, China.
Department of Pathophysiology, School of Biology and Basic Medical Sciences, Soochow University, Suzhou, China.
Genes Immun. 2016 Jul;17(5):276-82. doi: 10.1038/gene.2016.18. Epub 2016 Apr 21.
It has been recently identified that loss-of-function mutations in the uncharacterized gene ZBTB24 (zinc finger and BTB domain-containing 24) cause ICF2 (immunodeficiency, centromeric instability and facial anomalies syndrome 2) with immunological characteristics of greatly reduced serum antibodies and circulating memory B cells. ZBTB24 belongs to the large ZBTB family of transcriptional repressors with members like B-cell lymphoma 6 (BCL-6; ZBTB27) playing critical roles in B-cell functions. Given the genotype-phenotype correlation analyses in ICF2 patients and the high expression of ZBTB24 in human B cells, we, in the present study, investigated the function of ZBTB24 in human B-cell line Raji cells. Knockdown of endogenous ZBTB24 by small hairpin RNAs results in a significantly reduced proliferation through blocking the G0/1- to S-phase cell-cycle progression, but not apoptosis induction. Moreover, downregulation of ZBTB24 increases the expression of IRF-4 (interferon regulatory factor 4) and Blimp-1 (B lymphocyte-induced maturation protein 1), two crucial factors involved in the proliferation and differentiation of B cells. Importantly, ZBTB24 exerts these functions independent of BCL-6 as it does not affect the expression and function of BCL-6. Our study thus not only provides a molecular explanation for the B-cell and antibody defects observed in ZBTB24-deficient ICF2 patients, but also indicates that ZBTB24 represents a novel transcriptional factor essentially involved in human B-cell functions.
最近发现,未被鉴定的基因ZBTB24(含锌指和BTB结构域的24)功能丧失突变会导致ICF2(免疫缺陷、着丝粒不稳定和面部异常综合征2),其免疫特征为血清抗体和循环记忆B细胞大幅减少。ZBTB24属于大型ZBTB转录抑制因子家族,该家族成员如B细胞淋巴瘤6(BCL-6;ZBTB27)在B细胞功能中发挥关键作用。鉴于对ICF2患者的基因型-表型相关性分析以及ZBTB24在人B细胞中的高表达,我们在本研究中调查了ZBTB24在人B细胞系Raji细胞中的功能。通过小发夹RNA敲低内源性ZBTB24会导致增殖显著减少,这是通过阻断从G0/1期到S期的细胞周期进程实现的,而非诱导细胞凋亡。此外,ZBTB24的下调会增加IRF-4(干扰素调节因子4)和Blimp-1(B淋巴细胞诱导成熟蛋白1)的表达,这两个是参与B细胞增殖和分化的关键因子。重要的是,ZBTB24发挥这些功能独立于BCL-6,因为它不影响BCL-6的表达和功能。因此,我们的研究不仅为在ZBTB24缺陷的ICF2患者中观察到的B细胞和抗体缺陷提供了分子解释,还表明ZBTB24代表一种本质上参与人B细胞功能的新型转录因子。