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[蹄兔(蹄兔目,埃及蹄兔)血红蛋白的一级结构:α链中谷氨酰胺的插入]

[The primary structure of hemoglobins of the rock hyrax (Procavia habessinica, Hyracoidea): insertion of glutamine in the alpha chains].

作者信息

Kleinschmidt T, Braunitzer G

出版信息

Hoppe Seylers Z Physiol Chem. 1983 Sep;364(9):1303-13.

PMID:6629339
Abstract

The chromatography of the hemoglobin of the rock hyrax (Procavia habessinica) gives two components (73% HbI and 27% HbII). The amino-acid analysis and the sequences of the globin chains elucidated with the phenylthiohydantoin method, did not show any differences between the alpha I and alpha II or beta I and beta II chains, respectively. The different chromatographical behaviour cannot be explained. After chain separation by chromatography on CM-52 cellulose, all four primary structures were elucidated automatically in a sequenator on the chains and the tryptic peptides. In 20% of the beta I chains the N-terminal valine was blocked by acetyl. The alignment was performed by homology with the chains of human adult hemoglobin. The alpha chain of the rock hyrax has 142 amino-acid residues, i.e. one residue more than normal mammalian alpha chains, caused by an insertion of glutamine in the GH region supposed between positions 115 and 116. A comparison of human and hyrax hemoglobins shows an exchange of 21 amino-acid residues in the alpha chains and of 24 in the beta chains. Some substitutions in alpha 1 beta 1 contacts and in the surrounding of the heme are not supposed to effect the function of the hemoglobin. The phylogenetic relationship between the rock hyrax and the Indian elephant (Elephas maximus) on the one hand and with some Perissodactyla on the other, is discussed. Up to now the exchanges of alpha 110(G17)Ala leads to Ser and beta 56(D7)Gly leads to His have only been found in hyrax and elephant. This indicates a certain relationship between Hyracoidea and Proboscidea.

摘要

蹄兔(蹄兔属)血红蛋白的色谱分析产生了两个组分(73%的HbI和27%的HbII)。通过苯硫代乙内酰脲法阐明的珠蛋白链的氨基酸分析和序列,在αI与αII链或βI与βII链之间分别未显示出任何差异。不同的色谱行为无法解释。在CM - 52纤维素上进行色谱链分离后,在序列分析仪上自动阐明了所有四条链及其胰蛋白酶肽段的一级结构。在20%的βI链中,N端缬氨酸被乙酰基封闭。通过与成人人类血红蛋白的链进行同源性比对来进行序列排列。蹄兔的α链有142个氨基酸残基,即比正常哺乳动物的α链多一个残基,这是由于在假定位于115和116位之间的GH区域插入了谷氨酰胺所致。人类和蹄兔血红蛋白的比较显示,α链中有21个氨基酸残基的交换,β链中有24个氨基酸残基的交换。α1β1接触部位和血红素周围的一些替换被认为不会影响血红蛋白的功能。讨论了蹄兔与印度象(亚洲象)一方面以及与一些奇蹄目动物另一方面之间的系统发育关系。到目前为止,α110(G17)Ala变为Ser和β56(D7)Gly变为His的交换仅在蹄兔和大象中被发现。这表明蹄兔目和长鼻目之间存在一定的关系。

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