Kim W Y, Cheong N E, Lee D C, Lee K O, Je D Y, Bahk J D, Cho M J, Lee S Y
Plant Molecular Biology and Biotechnology Research Center, Gyeongsang National University, Chinju, Korea.
Plant Mol Biol. 1996 Jul;31(4):783-92. doi: 10.1007/BF00019466.
We have previously reported the isolation of a gene from a soybean cDNA library encoding a Ypt/Rab-related small GTP-binding protein, Sypt. Here, we report the isolation of a second Ypt/Rab-related gene, designated Srab2, from the same soybean cDNA library. And we compare the in vivo function of the two soybean genes utilizing a yeast ypt1-1 mutant. The Srab2 gene encodes 211 amino acid residues with a molecular mass of 23 169 Da. The deduced amino acid sequence of the Srab2 is closely related to the rat (76%) and human (75%) Rab2 proteins, but it shares relatively little homology to Sypt (46%) and Saccharomyces cerevisiae ypt proteins (41%). Genomic Southern blot analysis using the cDNA insert of Srab2 revealed that it belongs to a multigene family in the soybean genome. The protein encoded by Srab2 gene, when expressed in Escherichia coli, disclosed a GTP-binding activity. The expression pattern of the Srab2 gene is quite different from that of the Sypt gene. The Srab2 gene is predominantly expressed in the plumule region, while expression was very low in the other areas in soybean seedlings. On the other hand, the Sypt mRNA is not detectable in any tissues of soybean seedlings grown in the dark. However, light significantly suppressed the Srab2 gene expression, but enhanced the transcript levels of the Sypt gene in leaf and, at even higher levels, in root tissues. When the Srab2 and Sypt genes are introduced separately into a S cerevisiae defective in vesicular transport function, the Srab2 gene cannot complement the temperature-sensitive yeast ypt1-1 mutation at all, in contrast to the Sypt gene. In conclusion, the difference of functional complementation of the yeast mutation together with differential expression of the two genes suggest that the in vivo roles of the Srab2 and Sypt genes may be different in soybean cells.
我们之前报道过从大豆cDNA文库中分离出一个编码Ypt/Rab相关小GTP结合蛋白Sypt的基因。在此,我们报道从同一大豆cDNA文库中分离出第二个Ypt/Rab相关基因,命名为Srab2。我们利用酵母ypt1 - 1突变体比较了这两个大豆基因的体内功能。Srab2基因编码211个氨基酸残基,分子量为23169道尔顿。Srab2推导的氨基酸序列与大鼠(76%)和人类(75%)的Rab2蛋白密切相关,但与Sypt(46%)和酿酒酵母ypt蛋白(41%)的同源性相对较低。使用Srab2的cDNA插入片段进行的基因组Southern杂交分析表明,它属于大豆基因组中的一个多基因家族。Srab2基因编码的蛋白在大肠杆菌中表达时,表现出GTP结合活性。Srab2基因的表达模式与Sypt基因有很大不同。Srab2基因主要在胚芽区域表达,而在大豆幼苗的其他区域表达非常低。另一方面,在黑暗中生长的大豆幼苗的任何组织中都检测不到Sypt mRNA。然而,光照显著抑制了Srab2基因的表达,但增强了Sypt基因在叶片中的转录水平,在根组织中的转录水平更高。当Srab2和Sypt基因分别导入囊泡运输功能有缺陷的酿酒酵母中时,与Sypt基因不同,Srab2基因根本不能弥补温度敏感型酵母ypt1 - 1突变。总之,酵母突变功能互补的差异以及这两个基因的差异表达表明,Srab2和Sypt基因在大豆细胞中的体内作用可能不同。