Long R C, Zhang J H, Kurtz D M, Negri A, Tedeschi G, Bonomi F
Department of Chemistry, University of Georgia, Athens 30602.
Biochim Biophys Acta. 1992 Jul 31;1122(2):136-42. doi: 10.1016/0167-4838(92)90315-5.
Two previously unknown isoforms, labelled iso I and iso II, of the oxygen-carrying protein, myohemerythrin, have been isolated from carcasses of the sipunculid worm, Phascolopsis gouldii. The two isoforms have non-identical N-terminal amino acid sequences and slightly different absorption spectra in the met form. Far-ultraviolet circular dichroism shows that iso I contains approximately 69% alpha-helix. The complete amino acid sequence for iso I was obtained. The molecular weight calculated from this amino acid sequence and including the active site Fe-O-Fe unit, is 13,829. All of the physical and chemical properties of iso I noted above, including the amino acid sequence, are very similar to those of T. zostericola myohemerythrin. Except for the amino acid sequence, these properties are also very similar to that of a subunit in hemerythrin, the octameric analog found in hemerythrocytes. Only 58 of the 113 residues in P. gouldii hemerythrin are conserved in iso I. Sequence comparisons were used to help identify residues responsible for maintaining the common tertiary and diiron site structures in hemerythrin and myohemerythrin. The seven iron ligand residues previously identified in crystal structures of hemerythrin and myohemerythrin are conserved in iso I. However, none of the ten residue pairs previously identified as engaging in direct salt-bridge or hydrogen bond interactions between subunits in the hemerythrin octamer are conserved in iso I.
从星虫动物古氏管体星虫的尸体中分离出了携氧蛋白肌红血球素的两种此前未知的异构体,分别标记为异构体I和异构体II。这两种异构体的N端氨基酸序列不同,在高铁形式下的吸收光谱也略有差异。远紫外圆二色性表明异构体I含有约69%的α-螺旋。获得了异构体I的完整氨基酸序列。根据该氨基酸序列计算得出的分子量,包括活性位点Fe-O-Fe单元,为13,829。上述异构体I的所有物理和化学性质,包括氨基酸序列,都与带状阔沙蚕肌红血球素的非常相似。除了氨基酸序列外,这些性质也与血球素(血红细胞中发现的八聚体类似物)中的一个亚基的性质非常相似。古氏管体星虫血球素的113个残基中只有58个在异构体I中保守。序列比较有助于确定在血球素和肌红血球素中维持共同三级结构和双铁位点结构的残基。先前在血球素和肌红血球素晶体结构中鉴定出的七个铁配体残基在异构体I中保守。然而,先前确定在血球素八聚体中亚基之间参与直接盐桥或氢键相互作用的十个残基对在异构体I中都不保守。