Yoshida I, Koide S, Hasegawa S I, Nakagawara A, Tsuji A, Matsuda Y
Department of Biological Science and Technology, Faculty of Engineering, The University of Tokushima, 2-1 Minamijosanjima, Tokushima 770-8506, Japan.
Biochem J. 2001 Dec 15;360(Pt 3):683-9. doi: 10.1042/0264-6021:3600683.
PACE4 is a mammalian subtilisin-like proprotein convertase that activates transforming growth factor (TGF)-beta-related proteins such as bone morphogenetic protein 2 (BMP2), BMP4 and Nodal and exhibits a dynamic expression pattern during embryogenesis. We recently determined that the 1 kb 5'-upstream region of the PACE4 gene contains 12 E-box (E1-E12) elements and that an E-box cluster (E4-E9) acts as a negative regulator [Tsuji, Yoshida, Hasegawa, Bando, Yoshida, Koide, Mori and Matsuda (1999) J. Biochem. (Tokyo) 126, 494-502]. It is known that the mammalian achaete-scute homologue 1 (MASH-1) binds specifically to an E-box (CACCTG) sequence in collaboration with E47, a ubiquitously expressed basic helix-loop-helix (bHLH) factor. To identify the roles of the bHLH factor and E-box elements in regulating PACE4 gene expression in neural development, we analysed the effects of human achaete-scute homologue 1 (hASH-1) on PACE4 gene expression with various neuroblastoma cell lines. The expressions of PACE4 and hASH-1 are correlated inversely in these cell lines. The overexpression of hASH-1 or MASH-1 causes a marked decrease in endogenous PACE4 gene expression but has no effect on the expression of other subtilisin-like proprotein convertases such as furin, PC5/6 and PC7/8. In contrast, other neural bHLH factors (MATH-1, MATH-2, neurogenin 1, neurogenin 2, neurogenin 3 and E47) did not affect PACE4 gene expression. Furthermore, an E-box cluster was a negative regulatory element for the promoter activity in NBL-S cells expressing hASH-1 at high level as determined by a luciferase assay. Binding of hASH-1 to the E-box cluster was confirmed by gel mobility-shift assay. In the present study we identified the PACE4 gene as one of the targets of hASH-1, which is a key factor in the initiation of neural differentiation. These results suggest that the alteration of PACE4 gene expression by hASH-1 causes rapid changes in the biological activities of TGF-beta-related proteins via post-translational modification of these proteins.
PACE4是一种哺乳动物类枯草杆菌蛋白酶原蛋白转化酶,可激活转化生长因子(TGF)-β相关蛋白,如骨形态发生蛋白2(BMP2)、BMP4和Nodal,并在胚胎发育过程中呈现动态表达模式。我们最近确定,PACE4基因1 kb的5'-上游区域包含12个E-box(E1-E12)元件,且一个E-box簇(E4-E9)作为负调控因子[Tsuji、Yoshida、Hasegawa、Bando、Yoshida、Koide、Mori和Matsuda(1999年)《生物化学杂志》(东京)126,494-502]。已知哺乳动物无翅型小盾片同源物1(MASH-1)与E47(一种普遍表达的碱性螺旋-环-螺旋(bHLH)因子)协同作用,特异性结合E-box(CACCTG)序列。为了确定bHLH因子和E-box元件在神经发育中调节PACE4基因表达的作用,我们用各种神经母细胞瘤细胞系分析了人无翅型小盾片同源物1(hASH-1)对PACE4基因表达的影响。在这些细胞系中,PACE4和hASH-1的表达呈负相关。hASH-1或MASH-1的过表达导致内源性PACE4基因表达显著下降,但对其他类枯草杆菌蛋白酶原蛋白转化酶如弗林蛋白酶、PC5/6和PC7/8的表达没有影响。相反,其他神经bHLH因子(MATH-1、MATH-2、神经生成素1、神经生成素2、神经生成素3和E47)不影响PACE4基因表达。此外,通过荧光素酶测定确定,E-box簇是在高水平表达hASH-1的NBL-S细胞中启动子活性的负调控元件。凝胶迁移率变动分析证实了hASH-1与E-box簇的结合。在本研究中,我们确定PACE4基因是hASH-1的靶标之一,hASH-1是神经分化起始中的关键因子。这些结果表明,hASH-1对PACE4基因表达的改变通过这些蛋白的翻译后修饰导致TGF-β相关蛋白的生物学活性快速变化。