Ben Tahar S, Scherrer K
Mol Biol Rep. 1983 May;9(1-2):101-13. doi: 10.1007/BF00777480.
The nucleotide sequence of the duck alpha D globin mRNA was determined. Its main feature is an exceptionally short 3' non-coding segment of only 46 nucleotides, placed after the coding sequence of 141 codons. The last of the 6 adult globin mRNA of duck and chicken being thus sequenced, a comparison of all their features has become possible. Comparing the duck alpha D mRNA to the related sequence in the chicken, we found greater homology than comparing it to the linked alpha A globin sequence in the same species. Extensive homology can be found for a same globin chain alpha A, alpha D or beta in between different avian species including also the goose and the ostrich; the avian alpha globin chains show a lower degree of sequence conservation in between species than the beta chains. In contrast, within one species the three globin sequences have further diverged. The divergence between the alpha A and alpha D globin within a same species point to individual functional specificity and hence independent evolution and suggest that a mechanism of 'gene conversion' did not operate in between the avian alpha globin genes. Two segments of the amino acid sequence which we named 'A alpha' and 'B alpha' remain homologous in all avian alpha globins; two other regions 'A beta' and 'B beta' are identical in between the beta globins. Segment A is placed at the 5' end of exon II, and segment B at the 3' end of the same exon; some amino acids in those segments are involved in the Heme binding site. Being almost identical in all know mammalian and avian globins of the alpha respectively the beta type, regions A and B seem to represent the best conserved sequences in adult globin mRNA maintained during the divergence of species.
测定了鸭αD珠蛋白mRNA的核苷酸序列。其主要特征是在141个密码子的编码序列之后,有一个异常短的仅46个核苷酸的3'非编码区。鸭和鸡的6种成年珠蛋白mRNA中的最后一种已测序完毕,因此可以对它们所有的特征进行比较。将鸭αD mRNA与鸡的相关序列进行比较,我们发现其同源性高于将其与同一物种中相连的αA珠蛋白序列进行比较。在包括鹅和鸵鸟在内的不同鸟类物种之间,同一条珠蛋白链αA、αD或β都有广泛的同源性;鸟类α珠蛋白链在物种间的序列保守程度低于β链。相比之下,在同一物种内,三种珠蛋白序列进一步分化。同一物种内αA和αD珠蛋白之间的差异表明其具有个体功能特异性,因此是独立进化的,这表明“基因转换”机制在鸟类α珠蛋白基因之间并未起作用。我们命名为“Aα”和“Bα”的两段氨基酸序列在所有鸟类α珠蛋白中都保持同源;另外两段“Aβ”和“Bβ”在β珠蛋白之间是相同的。A段位于外显子II的5'端,B段位于同一外显子的3'端;这些片段中的一些氨基酸参与血红素结合位点。A区和B区在所有已知的哺乳动物和鸟类α型及β型珠蛋白中几乎相同,它们似乎代表了物种分化过程中成年珠蛋白mRNA中保存最完好的序列。