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在氧合作用下,4×6聚体狼蛛血蓝蛋白的构象转变涉及所有层次结构。

All hierarchical levels are involved in conformational transitions of the 4 x 6-meric tarantula hemocyanin upon oxygenation.

作者信息

Hartmann Hermann, Decker Heinz

机构信息

Institut für Molekulare Biophysik, Universität Mainz, Jakob Welder Weg 26, D-55099 Mainz, Germany.

出版信息

Biochim Biophys Acta. 2002 Dec 16;1601(2):132-7. doi: 10.1016/s1570-9639(02)00459-4.

Abstract

The respiratory protein of the tarantula Eurypelma californicum is a 4 x 6-meric hemocyanin that binds oxygen with high cooperativity. This requires the existence of different conformations which have been confirmed by small angle X-ray scattering (SAXS). Here we present reconstructed 3D-models of the oxy- and deoxy-forms of tarantula hemocyanins, as obtained by fitting small angle X-rays scattering curves on the basis of known X-ray structures and electron microscopy of related hemocyanins. For the first time, the involvement of movements at all levels of the quaternary structure was confirmed for an arthropod hemocyanin upon oxygenation. The two identical 2 x 6-meric half-molecules of the native 4 x 6-mer were shifted in the oxy-state along each other compared with the deoxy-state by about 14 A. In addition, the angle between the two 2 x 6-meric half-molecules increased by 13 degrees. Within these 2 x 6-mers the two hexamers were rotated against each other by about 26 degrees with respect to the deoxy-state. In addition, the distance between the two trimers of each hexamer increased upon oxygenation by about 2.5 A. These strongly coupled movements are based on the particular hierarchical structure of the 4 x 6-mer. It also shows a concept of allosteric interaction in hierarchically assembled proteins to guarantee the involvement of all subunits of a native oligomer to establish very high Hill coefficients.

摘要

加利福尼亚红膝鸟蛛的呼吸蛋白是一种4×6聚体血蓝蛋白,它能以高协同性结合氧气。这需要存在不同的构象,小角X射线散射(SAXS)已证实了这一点。在此,我们展示了通过根据已知的X射线结构和相关血蓝蛋白的电子显微镜图像拟合小角X射线散射曲线而获得的蜘蛛血蓝蛋白氧合形式和脱氧形式的三维重建模型。首次证实了节肢动物血蓝蛋白在氧合时四级结构各级水平上的运动参与情况。与脱氧状态相比,天然4×6聚体的两个相同的2×6聚体半分子在氧合状态下彼此相对移动了约14埃。此外,两个2×6聚体半分子之间的夹角增加了13度。在这些2×6聚体内,两个六聚体相对于脱氧状态彼此旋转了约26度。此外,每个六聚体的两个三聚体之间的距离在氧合时增加了约2.5埃。这些强耦合运动基于4×6聚体的特定层次结构。它还展示了分级组装蛋白质中的变构相互作用概念,以确保天然寡聚体的所有亚基参与,从而建立非常高的希尔系数。

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