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非脊椎动物珠蛋白基因的组织

Organization of non-vertebrate globin genes.

作者信息

Vinogradov S N, Walz D A, Pohajdak B

机构信息

Department of Biochemistry, Wayne State University School of Medicine, Detroit, MI 48201.

出版信息

Comp Biochem Physiol B. 1992 Dec;103(4):759-73. doi: 10.1016/0305-0491(92)90193-u.

Abstract

The organization of non-vertebrate globin genes exhibits substantially more variability than the three-exon, two-intron structure of the vertebrate globin genes. (1) The structures of genes of the single-domain globin chains of the annelid Lumbricus and the mollusc Anadara, and the globin gene coding for the two-domain chains of the clam Barbatia, are similar to the vertebrate plan. (2) Genes for single-domain chains exist in bacteria and protozoa. Although the globin gene is highly expressed in the bacterium Vitreoscilla, the putative globin gene hmp in E. coli, which codes for a chimeric protein whose N-terminal moiety of 139 residues contains 67 residues identical to the Vitreoscilla globin, may be either unexpressed or expressed at very low levels, despite the presence of normal regulatory sequences. The DNA sequence of the globin gene of the protozoan Paramecium, determined recently by Yamauchi and collaborators, appears to consist of two exons separated by a short intron. (3) Among the lower eukaryotes, the yeasts Saccharomyces and Candida have chimeric proteins consisting of N-terminal globin and C-terminal flavoprotein moieties of about the same size. The structure of the gene for the chimeric protein of Saccharomyces exhibits no introns. According to Riggs, the presence of chimeric proteins in E. coli and other prokaryotes, such as Alcaligenes and Rhizobium, as well as in yeasts, suggests a previously unrecognized evolutionary pathway for hemoglobin, namely that of a multipurpose heme-binding domain attached to a variety of unrelated proteins with diverse functions. (4) The published globin gene sequences of the insect larva Chironomus have an intron-less structure and are present as clusters of multiple copies; the expression of the globin genes is tissue and developmental stage-specific. Furthermore, the expression of many of these genes has not yet been demonstrated despite the presence of apparently normal regulatory sequences in the two flanking regions. Unexpectedly, Bergtrom and collaborators have recently shown that at least three Ctt globin II beta genes contain putative introns. (5) Pohajdak and collaborators have found a seven-exon and six-intron structure for the globin gene of the nematode Pseudoterranova which codes for a two-domain globin chain. Although the second and fourth introns of the N-terminal domain correspond to the two introns found in vertebrate globin genes, the position of the third intron is close to that of the central intron in plant hemoglobins.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

与脊椎动物珠蛋白基因的三外显子、两内含子结构相比,非脊椎动物珠蛋白基因的组织形式表现出更多的变异性。(1)环节动物蚯蚓和软体动物泥蚶的单结构域珠蛋白链基因结构,以及蛤蜊巴氏蛤编码双结构域链的珠蛋白基因结构,与脊椎动物的模式相似。(2)细菌和原生动物中存在单结构域链的基因。尽管珠蛋白基因在透明颤菌中高度表达,但大肠杆菌中的假定珠蛋白基因hmp,其编码一种嵌合蛋白,该蛋白139个残基的N端部分有67个残基与透明颤菌珠蛋白相同,尽管存在正常的调控序列,该基因可能未表达或表达水平极低。最近由山内及其合作者测定的原生动物草履虫珠蛋白基因的DNA序列,似乎由两个被短内含子隔开的外显子组成。(3)在低等真核生物中,酿酒酵母和念珠菌有由大小大致相同的N端珠蛋白和C端黄素蛋白部分组成的嵌合蛋白。酿酒酵母嵌合蛋白基因的结构没有内含子。根据里格斯的说法,大肠杆菌和其他原核生物(如产碱菌和根瘤菌)以及酵母中嵌合蛋白的存在,表明了一条以前未被认识的血红蛋白进化途径,即一个多功能血红素结合结构域与各种功能不同的不相关蛋白质相连的途径。(4)已发表的摇蚊幼虫珠蛋白基因序列无内含子结构,以多个拷贝的簇形式存在;珠蛋白基因的表达具有组织和发育阶段特异性。此外,尽管两侧区域存在明显正常的调控序列,但许多这些基因的表达尚未得到证实。出乎意料的是,伯格特伦及其合作者最近表明,至少三个摇蚊珠蛋白IIβ基因含有假定的内含子。(5)波哈伊达克及其合作者发现,编码双结构域珠蛋白链的线虫假新地蛔珠蛋白基因具有七外显子和六内含子结构。尽管N端结构域的第二和第四内含子与脊椎动物珠蛋白基因中的两个内含子相对应,但第三内含子的位置与植物血红蛋白中央内含子的位置相近。(摘要截于400字)

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