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牛生长激素分离片段中的螺旋形成

Helical formation in isolated fragments of bovine growth hormone.

作者信息

Brems D N, Plaisted S M, Kauffman E W, Lund M, Lehrman S R

机构信息

Control Division, Upjohn Company, Kalamazoo, Michigan 49001.

出版信息

Biochemistry. 1987 Dec 1;26(24):7774-8. doi: 10.1021/bi00398a036.

Abstract

The peptide 109-133 was isolated from bovine growth hormone (bGH) and studied for helix formation in aqueous solutions. This fragment was shown to contain helical structure by far-ultraviolet circular dichroism in aqueous solutions. The amount of helix was dependent on pH and peptide concentration. The peptide has maximum helicity between pH 4 and 5 and at high peptide concentration. Under these conditions for maximal helix population, this fragment is approximately 100% helical. Secondary structure predictions suggest that residues 110-127 have a strong propensity to form an amphipathic helix. We have also studied a related peptide, 96-133, and show by gel filtration that it undergoes an increase in molecular weight that directly correlates with a coil to helix transition. A comparison of the helical content of 96-133 to 109-133 and circular dichroism studies of peptide 96-112 suggest that the helix of 96-133 is limited to the 109-133 region. Current models for alpha-helix formation predict that peptides the size of 109-133 should not contain measurable helicity in aqueous solutions. Our studies show that the unusual stability of helix 109-133 is due to electrostatic interactions and probable intermolecular packing between hydrophobic faces of the amphipathic surfaces of the helices. The implications of helix formation in these fragments to a framework model of protein folding for bGH are discussed.

摘要

从牛生长激素(bGH)中分离出肽段109 - 133,并对其在水溶液中的螺旋形成进行了研究。通过远紫外圆二色光谱表明,该片段在水溶液中含有螺旋结构。螺旋的含量取决于pH值和肽浓度。该肽在pH 4至5之间以及高肽浓度时具有最大螺旋度。在这些使螺旋群体最大化的条件下,该片段约100%呈螺旋状。二级结构预测表明,残基110 - 127具有形成两亲性螺旋的强烈倾向。我们还研究了相关肽段96 - 133,通过凝胶过滤显示其分子量增加,这与从卷曲到螺旋的转变直接相关。对96 - 133与109 - 133的螺旋含量比较以及肽段96 - 112的圆二色光谱研究表明,96 - 133的螺旋仅限于109 - 133区域。目前关于α - 螺旋形成的模型预测,像109 - 133这样大小的肽在水溶液中不应含有可测量的螺旋度。我们的研究表明,螺旋109 - 133不同寻常的稳定性是由于静电相互作用以及螺旋两亲性表面疏水面之间可能的分子间堆积。讨论了这些片段中螺旋形成对bGH蛋白质折叠框架模型的影响。

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