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2D-NMR 揭示了 LDL 颗粒的电负性和正电性部分中载脂蛋白 B-100 蛋白中暴露的赖氨酸残基的不同群体。

2D-NMR reveals different populations of exposed lysine residues in the apoB-100 protein of electronegative and electropositive fractions of LDL particles.

机构信息

CIC bioGUNE, Parque Tecnológico de Bizkaia, 48160 Derio, Spain.

出版信息

J Lipid Res. 2010 Jun;51(6):1560-5. doi: 10.1194/jlr.D002642. Epub 2010 Jan 28.

Abstract

Several potentially atherogenic LDL subfractions present low affinity for the LDL receptor, which result in impaired plasma clearance. Electronegative LDL [LDL(-)] is one of these minor subfractions and the molecular basis for its reduced receptor affinity is not well understood. In the present study, high-resolution 2D-NMR spectroscopy has been employed to characterize the surface-exposed lysine residues of the apolipoprotein (apo)B-100 protein in both LDL(-) and LDL(+) subfractions. LDL(+) showed two populations of lysine residues, similar to those previously described in total LDL. "Normal" Lys have a pk(a) of 10.4 whereas "active" Lys have a pk(a) of 8.8 and have been suggested to be involved in receptor binding. In contrast to LDL(+), the LDL(-) subfraction presented a third type of Lys, named as "intermediate" Lys, with a different microenvironment and higher basicity (pk(a) 10.7). These intermediate Lys cannot be reliably identified by 1D-NMR. Because the abundance of normal Lys is similar in LDL(+) and LDL(-), the intermediate Lys in the apoB-100 molecule of LDL(-) should come from a group of active Lys in LDL(+) particles that have a less basic microenvironment in the LDL(-) particle. These differences between LDL(+) and LDL(-) are indicative of a distinct conformation of apoB-100 that could be related to loss of affinity of LDL(-) for the LDL receptor.

摘要

几种潜在的致动脉粥样硬化 LDL 亚组分对 LDL 受体的亲和力较低,导致其在血浆中的清除受损。带负电荷的 LDL(LDL(-))就是其中的一个亚组分,其受体亲和力降低的分子基础尚不清楚。在本研究中,高分辨率 2D-NMR 光谱已被用于表征 LDL(-)和 LDL(+)亚组分中载脂蛋白(apo)B-100 蛋白的表面暴露赖氨酸残基。LDL(+)显示出两种赖氨酸残基群体,与之前在总 LDL 中描述的相似。“正常”Lys 的 pk(a)为 10.4,而“活性”Lys 的 pk(a)为 8.8,并且被认为与受体结合有关。与 LDL(+)相反,LDL(-)亚组分呈现出第三种类型的 Lys,称为“中间”Lys,具有不同的微环境和更高的碱性(pk(a) 10.7)。这些中间 Lys 不能通过 1D-NMR 可靠地识别。由于正常 Lys 在 LDL(+)和 LDL(-)中的丰度相似,因此 LDL(-)apoB-100 分子中的中间 Lys 应该来自 LDL(+)颗粒中一组活性 Lys,其在 LDL(-)颗粒中的微环境碱性较低。LDL(+)和 LDL(-)之间的这些差异表明 apoB-100 的构象明显不同,这可能与 LDL(-)与 LDL 受体亲和力的丧失有关。

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