Ishida T K, Tojo T, Aoki T, Kobayashi N, Ohishi T, Watanabe T, Yamamoto T, Inoue J
Department of Oncology, University of Tokyo, Japan.
Proc Natl Acad Sci U S A. 1996 Sep 3;93(18):9437-42. doi: 10.1073/pnas.93.18.9437.
Signals emanating from CD40 play crucial roles in B-cell function. To identify molecules that transduce CD40 signalings, we have used the yeast two-hybrid system to done cDNAs encoding proteins that bind the cytoplasmic tail of CD40. A cDNA encoding a putative signal transducer protein, designated TRAF5, has been molecularly cloned. TRAF5 has a tumor necrosis factor receptor-associated factor (TRAF) domain in its carboxyl terminus and is most homologous to TRAF3, also known as CRAF1, CD40bp, or LAP-1, a previously identified CD40-associated factor. The amino terminus has a RING finger domain, a cluster of zinc fingers and a coiled-coil domain, which are also present in other members of the TRAF family protein except for TRAF1. In vitro binding assays revealed that TRAF5 associates with the cytoplasmic tail of CD40, but not with the cytoplasmic tail of tumor receptor factor receptor type 2, which associates with TRAF2. Based on analysis of the association between TRAF5 and various CD40 mutants, residues 230-269 of CD40 are required for the association with TRAF5. In contrast to TRAF3, overexpression of TRAF5 activates transcription factor nuclear factor kappa B. Furthermore, amino-terminally truncated forms of TRAF5 suppress the CD40-mediated induction of CD23 expression, as is the case with TRAF3. These results suggest that TRAF5 and TRAF3 could be involved in both common and distinct signaling pathways emanating from CD40.
源自CD40的信号在B细胞功能中发挥着关键作用。为了鉴定转导CD40信号的分子,我们利用酵母双杂交系统筛选编码与CD40胞质尾结合的蛋白质的cDNA。一个编码假定信号转导蛋白的cDNA,命名为TRAF5,已被分子克隆。TRAF5在其羧基末端具有肿瘤坏死因子受体相关因子(TRAF)结构域,并且与TRAF3最为同源,TRAF3也被称为CRAF1、CD40bp或LAP-1,是先前鉴定的与CD40相关的因子。氨基末端具有一个环指结构域、一簇锌指结构域和一个卷曲螺旋结构域,除TRAF1外,这些结构域也存在于TRAF家族蛋白的其他成员中。体外结合试验表明,TRAF5与CD40的胞质尾结合,但不与与TRAF2结合的肿瘤坏死因子受体2型的胞质尾结合。基于对TRAF5与各种CD40突变体之间关联的分析,CD40的230-269位残基是与TRAF5结合所必需的。与TRAF3相反,TRAF5的过表达激活转录因子核因子κB。此外,TRAF5的氨基末端截短形式抑制CD40介导的CD23表达诱导,TRAF3也是如此。这些结果表明,TRAF5和TRAF3可能参与源自CD40的共同和不同的信号通路。