Kolodrubetz D, Burgum A
Department of Microbiology, University of Texas, San Antonio 78284.
Yeast. 1991 Feb;7(2):79-90. doi: 10.1002/yea.320070202.
In order to determine the biological functions of moderately abundant, high mobility group (HMG)-like nuclear proteins, a genetic approach has been taken. The gene for one such protein, NHP2, has been cloned and characterized from Saccharomyces cerevisiae. NHP2 has been called 'HMG-like' because of the physical/chemical properties it shares with the HMG proteins from higher eukaryotic cells. However, nucleotide sequence analysis revealed that NHP2 could encode a 17.1 kilodalton basic protein which was not significantly homologous to any previously sequenced HMG proteins. Thus NHP2 defines a new member of the HMG class of proteins. A search of protein databases showed that the amino acid sequence of NHP2 shared significant identities with two ribosomal proteins; the acidic ribosomal protein S6 from Halobacterium marismorium and protein L7a from mammals. The biological relevance of these homologies is unclear since previous biochemical results indicated that NHP2 was not a ribosomal protein. S1 nuclease analysis indicated that the gene contained no introns but had multiple transcription initiation sites 20 to 40 bases before the ATG codon. Finally, NHP2 has been shown to have a critical role in the cell; when a diploid yeast strain deleted of one copy of the NHP2 gene was sporulated and dissected, only half of the spores grew into normal colonies. The rest of the spores germinated, but only formed microcolonies containing 12 to 40 cells. None of the spores which grew into normal-sized colonies contained the mutant NHP2 gene, thus demonstrating that the NHP2 protein has an essential physiological function.
为了确定中等丰度的高迁移率族(HMG)样核蛋白的生物学功能,我们采用了一种遗传学方法。已从酿酒酵母中克隆并鉴定了一种此类蛋白NHP2的基因。由于NHP2与高等真核细胞的HMG蛋白具有共同的物理/化学性质,因此被称为“HMG样”蛋白。然而,核苷酸序列分析表明,NHP2可编码一种17.1千道尔顿的碱性蛋白,该蛋白与任何先前测序的HMG蛋白均无明显同源性。因此,NHP2定义了HMG蛋白家族的一个新成员。对蛋白质数据库的搜索显示,NHP2的氨基酸序列与两种核糖体蛋白具有显著的同一性;即来自盐沼盐杆菌的酸性核糖体蛋白S6和来自哺乳动物的蛋白L7a。这些同源性的生物学相关性尚不清楚,因为先前的生化结果表明NHP2不是核糖体蛋白。S1核酸酶分析表明,该基因不含内含子,但在ATG密码子前20至40个碱基处有多个转录起始位点。最后,已证明NHP2在细胞中具有关键作用;当缺失一个NHP2基因拷贝的二倍体酵母菌株进行孢子形成和分离时,只有一半的孢子长成正常菌落。其余的孢子发芽,但只形成含有12至40个细胞的微菌落。长成正常大小菌落的孢子均不含有突变的NHP2基因,因此表明NHP2蛋白具有重要的生理功能。