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异亮氨酸128苏氨酸多态性影响微粒体甘油三酯转移蛋白的稳定性和配体结合特性。

The Ile128Thr polymorphism influences stability and ligand binding properties of the microsomal triglyceride transfer protein.

作者信息

Ledmyr H, Ottosson L, Sunnerhagen M, Ehrenborg E

机构信息

Atherosclerosis Research Unit, King Gustaf V Research Institute, Karolinska University Hospital, Stockholm, Sweden.

出版信息

J Lipid Res. 2006 Jul;47(7):1378-85. doi: 10.1194/jlr.M600072-JLR200. Epub 2006 Apr 14.

Abstract

The microsomal triglyceride transfer protein (MTTP) is essential for the assembly of VLDLs. We recently observed that a polymorphism in the MTTP promoter (-493G>T), which is in allelic association with an isoleucine-to-theronine substitution at position 128 (Ile128Thr) in the expressed protein, confers an increased risk of coronary heart disease. Two variant proteins comprising amino acids 16-297 of intact MTTP, MTTP(N)-Ile128 and MTTP(N)-Thr128, had similar native secondary structure content, as judged by circular dichroism. However, the thermal stability of MTTP(N)-Thr128 was greatly reduced, and this protein was also more extensively cleaved in limited proteolysis experiments compared with MTTP(N)-Ile128; both of these findings support a less compact fold. On adding LDL, which includes natively folded apolipoprotein B (apoB), decreased stability of the MTTP(N)-Thr128-LDL complex was observed compared with that of the MTTP(N)-Ile128-LDL complex. In a refined model of the N-terminal domain of MTTP, residue 128 is located in a surface-exposed position, in the same region as an identified MTTP binding site in the homologous apoB protein. Thus, the Ile128Thr polymorphism confers reduced structural stability, leading to decreased binding of MTTP to LDL particles. Because the major MTTP binding target on LDL is apoB, the Ile128Thr polymorphism could target the MTTP-apoB interaction.

摘要

微粒体甘油三酯转运蛋白(MTTP)对于极低密度脂蛋白(VLDL)的组装至关重要。我们最近观察到,MTTP启动子中的一个多态性位点(-493G>T),该位点与表达蛋白中第128位的异亮氨酸到苏氨酸替代(Ile128Thr)呈等位基因关联,会增加冠心病风险。通过圆二色性判断,由完整MTTP的16 - 297位氨基酸组成的两种变体蛋白MTTP(N)-Ile128和MTTP(N)-Thr128具有相似的天然二级结构含量。然而,MTTP(N)-Thr128的热稳定性大大降低,并且在有限蛋白酶解实验中,与MTTP(N)-Ile128相比,该蛋白也被更广泛地切割;这两个发现都支持其折叠结构不那么紧密。添加包含天然折叠载脂蛋白B(apoB)的低密度脂蛋白(LDL)后,与MTTP(N)-Ile128-LDL复合物相比,观察到MTTP(N)-Thr128-LDL复合物的稳定性降低。在MTTP N端结构域的优化模型中,第128位残基位于表面暴露位置,与同源apoB蛋白中已确定的MTTP结合位点在同一区域。因此,Ile128Thr多态性导致结构稳定性降低,从而导致MTTP与LDL颗粒的结合减少。由于MTTP在LDL上的主要结合靶点是apoB,Ile128Thr多态性可能针对MTTP-apoB相互作用。

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