Molecular conformation of thyroid hormones: structure and binding interactions of thyroxine.

V Cody
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引用次数: 4

Abstract

In an accurately determined X-ray diffraction study of the thyroid hormone thyroxine (T4), the two independent conformations in the crystal lattice show significant differences in the outer phenyl ring geometry when compared with that of 3,5,3'-triiodothyronine (T3). The major differences between the T4 and T3 structures are a shortened C4'-O4' bond, contraction of the C3'-C4'-C5' angle and an increase in the C3' and C5' angles of T4. These changes can be correlated with the difference in acidity of the 4'-OH of T4 and T3 and help to explain binding affinity differences among thyroactive compounds. The hydrogen bond directionality observed in T4 and other thyroid structures offers an insight into the molecular details of the hormone-receptor site. The conformation of one T4 molecule is cisoid, that of the other transoid, the first such instance of different overall conformations to be found in the same crystal lattice. One T4 molecule has the side chain nearly coplanar with the inner ring, an unusual conformation among thyroid structures.

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甲状腺激素的分子构象:甲状腺素的结构和结合相互作用。
在对甲状腺激素甲状腺素(T4)精确测定的x射线衍射研究中,与3,5,3'-三碘甲状腺原氨酸(T3)相比,晶格中两个独立构象的外苯基环几何形状有显著差异。T4和T3结构的主要区别是C4'-O4'键缩短,C3'-C4'-C5'角收缩,T4的C3'和C5'角增大。这些变化可能与T4和T3的4'-OH的酸度差异有关,并有助于解释甲状腺活性化合物之间的结合亲和力差异。在T4和其他甲状腺结构中观察到的氢键方向性提供了对激素受体位点分子细节的深入了解。一个T4分子的构象是顺椭球,另一个是跨椭球,这是在同一晶格中首次发现不同整体构象的实例。一个T4分子的侧链与内环几乎共面,这在甲状腺结构中是一种不寻常的构象。
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