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牛和骆驼β-酪蛋白的伴侣活性:其表面疏水性在防止乙醇脱氢酶聚集方面的重要性。

Chaperone activities of bovine and camel beta-caseins: Importance of their surface hydrophobicity in protection against alcohol dehydrogenase aggregation.

作者信息

Barzegar Abolfazl, Yousefi Reza, Sharifzadeh Ahmad, Dalgalarrondo Michèle, Chobert Jean-Marc, Ganjali Mohammad Reza, Norouzi Parviz, Ehsani Mohammad Reza, Niasari-Naslaji Amir, Saboury Ali Akbar, Haertlé Thomas, Moosavi-Movahedi Ali Akbar

机构信息

Institute of Biochemistry and Biophysics, University of Tehran, Tehran, Iran.

出版信息

Int J Biol Macromol. 2008 May 1;42(4):392-9. doi: 10.1016/j.ijbiomac.2008.01.008. Epub 2008 Feb 7.

Abstract

Beta-casein (beta-CN) showing properties of intrinsically unstructured proteins (IUP) displays many similarities with molecular chaperones and shows anti-aggregation activity in vitro. Chaperone activities of bovine and camel beta-CN were studied using alcohol dehydrogenase (ADH) as a substrate. To obtain an adequate relevant information about the chaperone capacities of studied caseins, three different physical parameters including chaperone constant (k(c), microM(-1)), thermal aggregation constant (k(T), degrees C(-1)) and aggregation rate constant (k(t), min(-1)) were measured. Bovine beta-CN displays greater chaperone activity than camel beta-CN. Fluorescence studies of 8-anilino-1-naphthalenesulfonic acid (ANS) binding demonstrated that bovine beta-CN is doted with larger effective hydrophobic surfaces at all studied temperatures than camel beta-CN. Greater relative hydrophobicity of bovine beta-CN than camel beta-CN may be a factor responsible for stronger interactions of bovine beta-CN with the aggregation-prone pre denatured molecular species of the substrate ADH, which resulted in greater chaperone activity of bovine beta-CN.

摘要

具有内在无序蛋白(IUP)特性的β-酪蛋白(β-CN)与分子伴侣表现出许多相似之处,并在体外显示出抗聚集活性。使用乙醇脱氢酶(ADH)作为底物研究了牛和骆驼β-CN的伴侣活性。为了获得有关所研究酪蛋白伴侣能力的足够相关信息,测量了三个不同的物理参数,包括伴侣常数(k(c),μM⁻¹)、热聚集常数(k(T),℃⁻¹)和聚集速率常数(k(t),min⁻¹)。牛β-CN比骆驼β-CN表现出更高的伴侣活性。8-苯胺基-1-萘磺酸(ANS)结合的荧光研究表明,在所有研究温度下,牛β-CN比骆驼β-CN具有更大的有效疏水表面。牛β-CN比骆驼β-CN具有更高的相对疏水性,这可能是导致牛β-CN与底物ADH易于聚集的预变性分子物种之间更强相互作用的一个因素,从而导致牛β-CN具有更高的伴侣活性。

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