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大西洋宽吻海豚(Tursiops truncatus)肌红蛋白的完整氨基酸序列。

Complete amino acid sequence of the myoglobin from the Atlantic bottlenosed dolphin, Tursiops truncatus.

作者信息

Jones B N, Vigna R A, Dwulet F E, Bogardt R A, Lehman L D, Gurd F R

出版信息

Biochemistry. 1976 Oct 5;15(20):4418-22. doi: 10.1021/bi00665a011.

Abstract

The complete amino acid sequence of the major component myoglobin from the Atlantic bottlenosed dolphin, Tursiops truncatus, was determined by specific cleavage of the protein to obtain large peptides that are readily degraded by the automatic sequencer. Three easily separable peptides were obtained by cleaving the protein with cyanogen bromide at the 2 methionine residues and 4 peptides were obtained by cleaving the methyl acetimidated protein with trypsin at the 3 arginine residues. By subjecting 4 of these peptides and the apomyoglobin to automatic Edman degradation, over 80% of the covalent structure of the protein was obtained. The remainder of the primary structure was determined by further digestion of the central cyanogen bromide peptide with trypsin and staphylococcal protease. This myoglobin differs from that of the sperm whale, Physter catodon, at 15 positions, from that of the California gray whale, Eschrichtius gibbosus, at 14 positions, from that of the common porpoise, Phocoena phocoena, at 6 positions, and from the myoglobin of the Black Sea dolphin, Delphinus delphis and the Amazon River dolphin, Inia goeffrensis, at 5 and 7 positions, respecitvely. All substitutions observed in this sequence fit easily into the tertiary structure of sperm whale myoglobin.

摘要

通过对大西洋宽吻海豚(Tursiops truncatus)主要成分肌红蛋白进行特异性切割,获得易于被自动测序仪降解的大肽段,从而确定了其完整的氨基酸序列。在两个甲硫氨酸残基处用溴化氰切割该蛋白质,得到了三个易于分离的肽段;在三个精氨酸残基处用胰蛋白酶切割甲基乙酰亚胺化的蛋白质,得到了四个肽段。通过对其中四个肽段和脱辅基肌红蛋白进行自动埃德曼降解,获得了该蛋白质超过80%的共价结构。通过用胰蛋白酶和葡萄球菌蛋白酶进一步消化中央溴化氰肽段,确定了其余的一级结构。这种肌红蛋白与抹香鲸(Physter catodon)的肌红蛋白在15个位置上不同,与加利福尼亚灰鲸(Eschrichtius gibbosus)的肌红蛋白在14个位置上不同,与普通鼠海豚(Phocoena phocoena)的肌红蛋白在6个位置上不同,与黑海海豚(Delphinus delphis)和亚马逊河豚(Inia goeffrensis)的肌红蛋白分别在5个和7个位置上不同。在这个序列中观察到的所有取代都很容易融入抹香鲸肌红蛋白的三级结构中。

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