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牛生长激素生物活性片段的构象研究

Conformation studies of biologically active fragments of bovine growth hormone.

作者信息

Hsu Chen C J, Sonenberg M

出版信息

Biochemistry. 1977 May 17;16(10):2110-8. doi: 10.1021/bi00629a010.

Abstract

Conformations of bovine growth hormone active fragments were studied using far ultraviolet circular dichroism and intrinsic fluorescence emission spectroscopy. The small fragment, A-II (segment 96-133 of bovine growth hormone), undergoes a helix to random coil structural transition between pH 5 and 10 (pKa = 7.15). At pH9, the random coil state of A-II reverts back to helix conformation as ionic strength increases from 0.01 to 1. The A-II fluorophore, Tyr-110, is quenched by a neighboring carboxyl group of Glu-111, but is only slightly affected by the secondary structural transition. The large fragment, A-I (segments 1-95 and 134-191, connected via a disulfide linkage, of bovine growth hormone), is a rigidly structured molecule with a large amount of beta-sheet structure. Trp-86 of A-I was found to reside in an aromatic and hydrophobic amino acid cluster which is only destroyed by a high concentration of denaturant. Based on the primary sequence of bovine growth hormone, conformation predictions were made using the Chou-Fasman method ((1974) Biochemistry 13, 222). Bovine growth hormone helical structures are predicted to be in segments 10-34, 66-87, 111-127, and 186-191, beta-Sheet structures are predicted to be in segments 45-54, 90-94, 101-105, 136-142, 161-165, and 174-179. Tetrapeptides 37-40, 41-44, 60-63, 129-132, 146-149, and 156-159 were predicted to be beta turns. The prediction scheme confirmed several spectroscopic observations, but it did not completely explain the behavior of bovine growth hormone peptide fragments.

摘要

利用远紫外圆二色光谱和内源荧光发射光谱研究了牛生长激素活性片段的构象。小片段A-II(牛生长激素的96 - 133区段)在pH 5至10之间经历了从螺旋到无规卷曲的结构转变(pKa = 7.15)。在pH9时,随着离子强度从0.01增加到1,A-II的无规卷曲状态恢复为螺旋构象。A-II的荧光团Tyr-110被Glu-111的相邻羧基淬灭,但二级结构转变对其影响较小。大片段A-I(牛生长激素的1 - 95区段和134 - 191区段,通过二硫键连接)是一个具有大量β-折叠结构的刚性分子。发现A-I的Trp-86位于一个芳香族和疏水性氨基酸簇中,只有在高浓度变性剂作用下该簇才会被破坏。基于牛生长激素的一级序列,使用Chou-Fasman方法((1974) Biochemistry 13, 222)进行了构象预测。预测牛生长激素的螺旋结构位于10 - 34、66 - 87、111 - 127和186 - 191区段,β-折叠结构位于45 - 54、90 - 94、101 - 105、136 - 142、161 - 165和174 - 179区段。预测四肽37 - 40、41 - 44、60 - 63、129 - 132、146 - 149和156 - 159为β-转角。该预测方案证实了一些光谱学观察结果,但并未完全解释牛生长激素肽片段的行为。

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