Price N T, Mellor H, Craddock B L, Flowers K M, Kimball S R, Wilmer T, Jefferson L S, Proud C G
Department of Biochemistry, University of Bristol, U.K.
Biochem J. 1996 Sep 1;318 ( Pt 2)(Pt 2):637-43. doi: 10.1042/bj3180637.
The guanine nucleotide-exchange factor eIF2B mediates the exchange of GDP bound to translation initiation factor eIF2 for GTP. This exchange process is a key regulatory step for the control of translation initiation in eukaryotic organisms. To improve our understanding of the structure, function and regulation of eIF2B, we have obtained and sequenced cDNA species encoding all of its five subunits. Here we report the sequences of eIF2B beta and delta from rat. This paper focuses on sequence similarities between the alpha, beta and delta subunits of mammalian eIF2B. Earlier work showed that the amino acid sequences of the corresponding subunits of eIF2B in the yeast Saccharomyces cerevisiae (GCN3, GCD7 and GCD2) exhibit considerable similarity. We demonstrate that this is also true for the mammalian subunits. Moreover, alignment of the eIF2B alpha, beta and delta sequences from mammals and yeast, along with the sequence of the putative eIF2B alpha subunit from Caenorhabditis elegans and eIF2B delta from Schizosaccharomyces pombe shows that a large number of residues are identical or conserved between the C-terminal regions of all these sequences. This strong sequence conservation points to the likely functional importance of these residues. The implications of this are discussed in the light of results concerning the functions of the subunits of eIF2B in yeast and mammals. Our results also indicate that the large apparent differences in mobility on SDS/PAGE between eIF2B beta and delta subunits from rat and rabbit are not due to differences in their lengths but reflect differences in amino acid composition. We have also examined the relative expression of mRNA species encoding the alpha, beta, delta and epsilon subunits of eIF2B in a range of rat tissues by Northern blot analysis. As might be expected for mRNA species encoding subunits of a heterotrimeric protein, the ratios of expression levels of these subunits to one another did not vary between the different rat tissues examined (with the possible exception of liver). This represents the first analysis of the levels of expression of mRNA species encoding the different subunits of eIF2B.
鸟嘌呤核苷酸交换因子eIF2B介导与翻译起始因子eIF2结合的GDP与GTP的交换。这一交换过程是真核生物中控制翻译起始的关键调控步骤。为了增进我们对eIF2B的结构、功能及调控的理解,我们已获取并测序了编码其所有五个亚基的cDNA种类。在此我们报告大鼠eIF2Bβ和δ的序列。本文着重于哺乳动物eIF2B的α、β和δ亚基之间的序列相似性。早期研究表明,酿酒酵母中eIF2B相应亚基(GCN3、GCD7和GCD2)的氨基酸序列具有相当大的相似性。我们证明哺乳动物亚基也是如此。此外,对来自哺乳动物和酵母的eIF2Bα、β和δ序列,以及来自秀丽隐杆线虫的推定eIF2Bα亚基序列和来自粟酒裂殖酵母的eIF2Bδ序列进行比对,结果显示所有这些序列的C端区域之间有大量相同或保守的残基。这种强烈的序列保守性表明这些残基可能具有重要的功能。结合酵母和哺乳动物中eIF2B亚基功能的相关结果,我们对这一现象的意义进行了讨论。我们的结果还表明,大鼠和兔子的eIF2Bβ和δ亚基在SDS/PAGE上迁移率的明显差异并非源于其长度差异,而是反映了氨基酸组成的不同。我们还通过Northern印迹分析检测了一系列大鼠组织中编码eIF2Bα、β、δ和ε亚基的mRNA种类的相对表达情况。正如对编码异源三聚体蛋白亚基的mRNA种类所预期的那样,在所检测的不同大鼠组织中(肝脏可能除外),这些亚基的表达水平相互之间的比例没有变化。这是对编码eIF2B不同亚基的mRNA种类表达水平的首次分析。