Minami M, Meshi T, Iwabuchi M
Department of Botany, Faculty of Science, Kyoto University, Japan.
Gene. 2000 Jan 11;241(2):333-9. doi: 10.1016/s0378-1119(99)00458-8.
The type I element (CCACGTCANCGATCCGCG), consisting of the Hex motif (CCACGTCA) and the reverse-oriented Oct motif (GATCCGCG), is necessary and sufficient to confer the S phase-specific transcription of the wheat histone H3 (TH012) gene. The transcriptional regulation via the type I element is thought to occur through interactions between transcription factors which bind specifically to the Hex and Oct motifs. Here we report S phase-specific DNA-binding proteins interacting with the type I element in partially synchronized wheat cultured cells. Hex motif-binding proteins found here resembled HBP-1a, as reported previously in terms of DNA-binding specificity. DNA-binding activities of the HBP-1a-like proteins were modulated by phosphorylation/dephosphorylation. In the electrophoretic mobility shift assay of the wheat nuclear extract, we also found three Oct motif-specific binding proteins, named OBRF (octamer-binding regulatory factor)-1, -2 and -3. One of the HBP-1a-like proteins and OBRF-1 appeared predominantly at the S phase. Thus, it was supposed that these two factors play a crucial role in the S phase-specific regulation of wheat histone gene expression.
I型元件(CCACGTCANCGATCCGCG)由六聚体基序(CCACGTCA)和反向的八聚体基序(GATCCGCG)组成,它对于赋予小麦组蛋白H3(TH012)基因的S期特异性转录是必需且充分的。通过I型元件进行的转录调控被认为是通过与六聚体和八聚体基序特异性结合的转录因子之间的相互作用来实现的。在此,我们报道了在部分同步化的小麦培养细胞中与I型元件相互作用的S期特异性DNA结合蛋白。此处发现的六聚体基序结合蛋白在DNA结合特异性方面与先前报道的HBP-1a相似。HBP-1a样蛋白的DNA结合活性受磷酸化/去磷酸化调节。在小麦核提取物的电泳迁移率变动分析中,我们还发现了三种八聚体基序特异性结合蛋白,分别命名为OBRF(八聚体结合调节因子)-1、-2和-3。其中一种HBP-1a样蛋白和OBRF-1主要出现在S期。因此,推测这两个因子在小麦组蛋白基因表达的S期特异性调控中起关键作用。