Ohan N, Bayaa M, Kumar P, Zhu L, Liu X J
Ottawa Civic Hospital Loeb Research Institute, University of Ottawa, Canada.
Mol Endocrinol. 1998 Aug;12(8):1086-98. doi: 10.1210/mend.12.8.0147.
A novel Xenopus insulin receptor substrate cDNA was isolated by hybridization screening using the rat insulin receptor substrate-1 (IRS-1) cDNA as a probe. The xIRS-u cDNA encodes an open reading frame of 1003 amino acids including a putative amino-terminal pleckstrin homology (PH) domain and phosphotyrosine-binding (PTB) domain. The carboxy terminus of xIRS-u contains several potential Src homology 2 (SH2)-binding sites, five of which are in the context of YM/LXM (presumptive binding sites for phosphatidylinositol 3-kinase). It also contains a putative binding site for Grb2 (YINID). Pair-wise amino acid sequence comparisons with the previously identified xIRS-1 and the four members of the mammalian IRS family (1 through 4) indicated that xIRS-u has similar overall sequence homology (33-45% identity) to all mammalian IRS proteins. In contrast, the previously isolated xIRS-1 is particularly similar (67% identical) to IRS-1 and considerably less similar (31-46%) to the other IRS family members (2 through 4). xIRS-u is also distinct from xIRS-1, having an overall sequence identity of 47%. These sequence analyses suggest that xIRS-u is a novel member of the IRS family rather than a Xenopus homolog of an existing member. Microinjection of mRNA encoding a Myc-tagged xIRS-u into Xenopus oocytes resulted in the expression of a 120-kDa protein (including 5 copies of the 13-amino acid Myc tag). The injection of xIRS-u mRNA accelerated insulin-induced MAP kinase activation with a concomitant acceleration of insulin-induced oocyte maturation. An aminoterminal deletion of the PH domain (xIRS-u deltaPH) significantly reduced the ability of xIRS-u to potentiate insulin signaling. In contrast to the full-length protein, injection of xIRS-u (1-299), which encoded the PH and PTB domain, or xIRS-u (1-170), which encoded only the PH domain, blocked insulin signaling in Xenopus oocytes. Finally, xIRS-u (119-299), which had a truncated PH domain and an intact PTB domain, had no effect on insulin signaling. This is the first report that the PH domain of an IRS protein can function in a dominant negative manner to inhibit insulin signaling.
通过以大鼠胰岛素受体底物 -1(IRS-1)cDNA 为探针进行杂交筛选,分离出一种新的非洲爪蟾胰岛素受体底物 cDNA。xIRS-u cDNA 编码一个由 1003 个氨基酸组成的开放阅读框,包括一个假定的氨基末端普列克底物蛋白同源性(PH)结构域和磷酸酪氨酸结合(PTB)结构域。xIRS-u 的羧基末端包含几个潜在的Src同源 2(SH2)结合位点,其中五个位于 YM/LXM 背景下(推测为磷脂酰肌醇 3 -激酶的结合位点)。它还包含一个假定的 Grb2 结合位点(YINID)。与先前鉴定的 xIRS-1 和哺乳动物 IRS 家族的四个成员(1 至 4)进行的氨基酸序列两两比较表明,xIRS-u 与所有哺乳动物 IRS 蛋白具有相似的总体序列同源性(33 - 45% 同一性)。相比之下,先前分离的 xIRS-1 与 IRS-1 特别相似(67% 相同),而与其他 IRS 家族成员(2 至 4)的相似性则低得多(31 - 46%)。xIRS-u 也与 xIRS-1 不同,总体序列同一性为 47%。这些序列分析表明,xIRS-u 是 IRS 家族的一个新成员,而不是现有成员的非洲爪蟾同源物。将编码带有 Myc 标签的 xIRS-u 的 mRNA 显微注射到非洲爪蟾卵母细胞中,导致表达出一种 120 kDa 的蛋白质(包括 5 个拷贝的 13 个氨基酸的 Myc 标签)。注射 xIRS-u mRNA 加速了胰岛素诱导的 MAP 激酶激活,并伴随胰岛素诱导的卵母细胞成熟加速。PH 结构域的氨基末端缺失(xIRS-u deltaPH)显著降低了 xIRS-u 增强胰岛素信号传导的能力。与全长蛋白相反,注射编码 PH 和 PTB 结构域的 xIRS-u(1 - 299)或仅编码 PH 结构域的 xIRS-u(1 - 170)会阻断非洲爪蟾卵母细胞中的胰岛素信号传导。最后,具有截短的 PH 结构域和完整的 PTB 结构域的 xIRS-u(119 - 299)对胰岛素信号传导没有影响。这是关于 IRS 蛋白的 PH 结构域可以以显性负性方式发挥作用来抑制胰岛素信号传导的首次报道。