Nislow C, Ray E, Pillus L
Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, Colorado 80309-0347, USA.
Mol Biol Cell. 1997 Dec;8(12):2421-36. doi: 10.1091/mbc.8.12.2421.
The trithorax gene family contains members implicated in the control of transcription, development, chromosome structure, and human leukemia. A feature shared by some family members, and by other proteins that function in chromatin-mediated transcriptional regulation, is the presence of a 130- to 140-amino acid motif dubbed the SET or Tromo domain. Here we present analysis of SET1, a yeast member of the trithorax gene family that was identified by sequence inspection to encode a 1080-amino acid protein with a C-terminal SET domain. In addition to its SET domain, which is 40-50% identical to those previously characterized, SET1 also shares dispersed but significant similarity to Drosophila and human trithorax homologues. To understand SET1 function(s), we created a null mutant. Mutant strains, although viable, are defective in transcriptional silencing of the silent mating-type loci and telomeres. The telomeric silencing defect is rescued not only by full-length episomal SET1 but also by the conserved SET domain of SET1. set1 mutant strains display other phenotypes including morphological abnormalities, stationary phase defects, and growth and sporulation defects. Candidate genes that may interact with SET1 include those with functions in transcription, growth, and cell cycle control. These data suggest that yeast SET1, like its SET domain counterparts in other organisms, functions in diverse biological processes including transcription and chromatin structure.
三体胸苷基因家族包含一些与转录调控、发育、染色体结构及人类白血病相关的成员。该家族的一些成员以及其他在染色质介导的转录调控中发挥作用的蛋白质共有的一个特征是存在一个被称为SET或Tromo结构域的130至140个氨基酸的基序。在此,我们对SET1进行了分析,SET1是三体胸苷基因家族的一个酵母成员,通过序列检测鉴定其编码一个具有C端SET结构域的1080个氨基酸的蛋白质。除了其SET结构域(与先前鉴定的结构域有40%至50%的同源性)外,SET1还与果蝇和人类的三体胸苷同源物存在分散但显著的相似性。为了了解SET1的功能,我们构建了一个缺失突变体。突变菌株虽然能够存活,但在沉默交配型位点和端粒的转录沉默方面存在缺陷。端粒沉默缺陷不仅可以通过全长附加型SET1挽救,也可以通过SET1保守的SET结构域挽救。set1突变菌株还表现出其他表型,包括形态异常、稳定期缺陷以及生长和孢子形成缺陷。可能与SET1相互作用的候选基因包括那些在转录、生长和细胞周期调控中发挥作用的基因。这些数据表明,酵母SET1与其在其他生物体中的SET结构域对应物一样,在包括转录和染色质结构在内的多种生物学过程中发挥作用。