Yang J, Riley M, Thomas K
Department of Anatomy, Morehouse School of Medicine, Atlanta, Georgia 30310-1495, USA.
J Exp Zool. 1998;282(1-2):179-87.
The major aim of this study was to identify cell-type-specific transcription factors present in somatic and germ cells that interact at cis-elements within the lactate dehydrogenase C (LDH/C) proximal promoter region. Electrophoretic mobility shift assays (EMSAs) were performed using wild-type and mutagenized GC-box LDH/C double-stranded (ds) oligonucleotides to probe nuclear extracts from primary germ cell populations, and an LDH/C nonexpressing cell line (Hela cells). Significant differences were observed in the composition of nuclear transcription factors bound to cis-elements within the LDH/C proximal promoter region in somatic versus germ cells. Using the wild-type LDH/C ds oligonucleotide to probe germ cell nuclear extracts, we consistently observed two DNA-protein complexes, one formed by Sp1 proteins and one formed by another uncharacterized germ cell nuclear transcription factor. Methylation interference analysis identified a unique 5'G residue within the GC-box motif as an integral part of the cis-element recognized by this germ cell nuclear transcription factor. In contrast, at least six major DNA-protein complexes were observed in EMSA studies using Hela cell nuclear extracts probed with the LDH/C wild-type oligonucleotide. In these EMSA studies, supershift analyses with antibodies recognizing the somatic Sp1 protein and the GC-box mutated LDH/C ds oligonucleotide demonstrated that only one of the six complexes formed was due to binding of Sp1 proteins. These in vitro EMSA studies have identified several somatic nuclear factors and at least one other germ cell nuclear transcription factor, which in addition to members of the Sp1 protein family, recognized cis-elements within the LDH/C proximal promoter region. Observations presented in this report strongly suggest that these somatic and germ cell nuclear transcription factors play central roles in modulating transactivation or suppression of the mouse LDH/C subunit gene in the respective cell types.
本研究的主要目的是鉴定存在于体细胞和生殖细胞中的细胞类型特异性转录因子,这些转录因子在乳酸脱氢酶C(LDH/C)近端启动子区域内的顺式元件处相互作用。使用野生型和诱变的GC盒LDH/C双链(ds)寡核苷酸进行电泳迁移率变动分析(EMSA),以探测原代生殖细胞群体和不表达LDH/C的细胞系(HeLa细胞)的核提取物。在体细胞与生殖细胞中,与LDH/C近端启动子区域内顺式元件结合的核转录因子组成存在显著差异。用野生型LDH/C双链寡核苷酸探测生殖细胞核提取物时,我们始终观察到两种DNA-蛋白质复合物,一种由Sp1蛋白形成,另一种由另一种未鉴定的生殖细胞核转录因子形成。甲基化干扰分析确定GC盒基序内一个独特的5'G残基是该生殖细胞核转录因子识别的顺式元件的一个组成部分。相比之下,在用LDH/C野生型寡核苷酸探测HeLa细胞核提取物的EMSA研究中,观察到至少六种主要的DNA-蛋白质复合物。在这些EMSA研究中,用识别体细胞Sp1蛋白的抗体和GC盒突变的LDH/C双链寡核苷酸进行的超迁移分析表明,形成的六种复合物中只有一种是由于Sp1蛋白的结合。这些体外EMSA研究鉴定了几种体细胞核因子和至少一种其他生殖细胞核转录因子,除Sp1蛋白家族成员外,它们还识别LDH/C近端启动子区域内的顺式元件。本报告中的观察结果强烈表明,这些体细胞核转录因子和生殖细胞核转录因子在各自细胞类型中调节小鼠LDH/C亚基基因的反式激活或抑制中发挥核心作用。