Okabe I, Bailey L C, Attree O, Srinivasan S, Perkel J M, Laurent B C, Carlson M, Nelson D L, Nussbaum R L
Howard Hughes Medical Institute, Philadelphia, PA.
Nucleic Acids Res. 1992 Sep 11;20(17):4649-55. doi: 10.1093/nar/20.17.4649.
We performed positional cloning of genes carried on yeast artificial chromosomes that span a human translocation breakpoint associated with a human disease and isolated by chance human and bovine genes with strong homology to the S. cerevisiae genes, SNF2/SWI2 and STH1, and the D. melanogaster gene brahma. We report here sequence analysis, expression data, and functional studies for this human SNF2-like gene (hSNF2L) and its bovine homolog (bovSNF2L). Despite strong homology at the amino acid level, hSNF2L is not capable of complementing the yeast mutations snf2 or sth1 in S. cerevisiae. Furthermore, in contrast to SNF2 itself, a fusion protein consisting of the DNA binding domain of LexA and hSNF2L did not transactivate a reporter gene downstream of LexA binding sites in a yeast expression system. The strong similarity between hSNF2L and these yeast and drosophila genes suggest that the mammalian genes are part of an evolutionarily conserved family that has been implicated as global activators of transcription in yeast and fruitflies but whose function in mammals remains unknown.
我们对酵母人工染色体上携带的基因进行了定位克隆,这些基因跨越了一个与人类疾病相关的人类易位断点,并偶然分离出了与酿酒酵母基因SNF2/SWI2、STH1以及黑腹果蝇基因brahma具有高度同源性的人类和牛的基因。我们在此报告该人类SNF2样基因(hSNF2L)及其牛同源基因(bovSNF2L)的序列分析、表达数据和功能研究。尽管在氨基酸水平上具有高度同源性,但hSNF2L无法弥补酿酒酵母中的snf2或sth1酵母突变。此外,与SNF2本身不同,由LexA的DNA结合结构域和hSNF2L组成的融合蛋白在酵母表达系统中不能激活LexA结合位点下游的报告基因。hSNF2L与这些酵母和果蝇基因之间的高度相似性表明,哺乳动物基因是一个进化上保守的家族的一部分,该家族在酵母和果蝇中被认为是全局转录激活因子,但其在哺乳动物中的功能仍然未知。