Laurent B C, Treitel M A, Carlson M
Department of Genetics and Development, Columbia University College of Physicians and Surgeons, New York, New York 10032.
Mol Cell Biol. 1990 Nov;10(11):5616-25. doi: 10.1128/mcb.10.11.5616-5625.1990.
The Saccharomyces cerevisiae SNF5 gene affects expression of both glucose- and phosphate-regulated genes and appears to function in transcription. We report the nucleotide sequence, which predicts that SNF5 encodes a 102,536-dalton protein. The N-terminal third of the protein is extremely rich in glutamine and proline. Mutants carrying a deletion of the coding sequence were viable but grew slowly, indicating that the SNF5 gene is important but not essential. Evidence that SNF5 affects expression of the cell type-specific genes MF alpha 1 and BAR1 at the RNA level extends the known range of SNF5 function. SNF5 is apparently required for expression of a wide variety of differently regulated genes. A bifunctional SNF5-beta-galactosidase fusion protein was localized in the nucleus by immunofluorescence. No DNA-binding activity was detected for SNF5. A LexA-SNF5 fusion protein, when bound to a lexA operator, functioned as a transcriptional activator.
酿酒酵母SNF5基因影响葡萄糖和磷酸盐调节基因的表达,并且似乎在转录过程中发挥作用。我们报道了其核苷酸序列,该序列预测SNF5编码一种102,536道尔顿的蛋白质。该蛋白质的N端三分之一富含谷氨酰胺和脯氨酸。携带编码序列缺失的突变体是存活的,但生长缓慢,这表明SNF5基因很重要但并非必需。有证据表明SNF5在RNA水平上影响细胞类型特异性基因MFα1和BAR1的表达,这扩展了已知的SNF5功能范围。显然,SNF5是多种不同调节基因表达所必需的。通过免疫荧光法将双功能SNF5-β-半乳糖苷酶融合蛋白定位在细胞核中。未检测到SNF5的DNA结合活性。当LexA-SNF5融合蛋白与lexA操纵基因结合时,它作为转录激活因子发挥作用。