首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Structural studies of hemoglobin from two flightless birds, ostrich and turkey: insights into their differing oxygen-binding properties
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Structural studies of hemoglobin from two flightless birds, ostrich and turkey: insights into their differing oxygen-binding properties

机译:从两个血红蛋白的结构的研究不会飞的鸟,鸵鸟和土耳其:见解素的性质不同

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Crystal structures of hemoglobin (Hb) from two flightless birds, ostrich (Struthio camelus) and turkey (Meleagris gallopova), were determined. The ostrich Hb structure was solved to a resolution of 2.22 A, whereas two forms of turkey Hb were solved to resolutions of 1.66 A (turkey monoclinic structure; TMS) and 1.39 A (turkey orthorhombic structure; TOS). Comparison of the amino-acid sequences of ostrich and turkey Hb with those from other avian species revealed no difference in the number of charged residues, but variations were observed in the numbers of hydrophobic and polar residues. Amino-acid-composition-based computation of various physical parameters, in particular their lower inverse transition temperatures and higher average hydrophobicities, indicated that the structures of ostrich and turkey Hb are likely to be highly ordered when compared with other avian Hbs. From the crystal structure analysis, the liganded state of ostrich Hb was confirmed by the presence of an oxygen molecule between the Fe atom and the proximal histidine residue in all four heme regions. In turkey Hb (both TMS and TOS), a water molecule was bound instead of an oxygen molecule in all four heme regions, thus confirming that they assumed the aqua-met form. Analysis of tertiary- and quaternary-structural features led to the conclusion that ostrich oxy Hb and turkey aqua-met Hb adopt the R-/RH-state conformation.
机译:从两个晶体结构的血红蛋白(Hb)不会飞的鸟,鸵鸟(Struthio camelus)和土耳其(30种gallopova)测定。鸵鸟Hb结构解决了2.22解决,而两种形式的土耳其Hb解决1.66(土耳其的决议单斜结构;斜方晶系的结构;氨基酸序列的鸵鸟和土耳其Hb与其他鸟类物种并没有发现不同数量的残留,但是数量的观察变化疏水性和极地残留。Amino-acid-composition-based计算各种各样的物理参数,尤其是他们的低逆过渡温度和更高平均疏水性,表明结构的鸵鸟和土耳其Hb可能是高度有序的与其他鸟类相比哈佛商学院。配体的鸵鸟Hb证实了菲之间存在一个氧分子原子和近端组氨酸残基四个血红素的地区。TOS),水分子是相反的氧分子在所有四个血红素地区,因此确认他们认为aqua-met形式。第三,quaternary-structural分析导致这样的结论:鸵鸟氧特性Hb和土耳其aqua-met Hb采用R - / RH-state构象。

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