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光可激活糖脂探针与人高密度脂蛋白2和3中载脂蛋白A-I和A-II的偶联

Coupling of photoactivatable glycolipid probes to apolipoproteins A-I and A-II in human high density lipoproteins 2 and 3.

作者信息

Berkhout T A, Groot P H, van Belzen R, Wirtz K W

出版信息

J Lipid Res. 1985 Aug;26(8):964-9.

PMID:3930643
Abstract

High density lipoprotein (HDL) from human serum was subfractionated into HDL2 and HDL3 by rate-zonal density gradient ultracentrifugation. The orientation of apoproteins (apo) A-I and A-II in these subfractions was investigated by use of the photosensitive glycolipid probes, 2-(4-azido-2-nitrophenoxy)-palmitoyl[1-14C]glucosamine (compound A) and 12-(4-azido-2-nitrophenoxy)-stearoyl[1-14C]glucosamine (compound B). Both probes were added to the HDL-structures in a ratio of two or three probe molecules per particle and were photoactivated by irradiation at a wavelength above 340 nm. After delipidation the probe-apoprotein adducts were analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Both the "shallow" probe (compound A) and the "depth" probe (compound B) were coupled for 10-14% (of the label added) to apoA-I and apoA-II from HDL3 and for about 6% to apoA-I and apoA-II from HDL2. By taking into account the relative amounts of apoA-I and apoA-II, it was estimated that the "shallow" probe labeled apoA-I 40% more effectively than apoA-II in both HDL2 and HDL3; the "depth" probe labeled apoA-I and apoA-II equally well in both subfractions. The data suggest that towards the surface HDL2 and HDL3 contain a relatively larger portion of apoA-I than apoA-II, whilst towards the core both subfractions are occupied by an equal portion of apoA-I and apoA-II. Application of these photolabels has failed to point out differences in the structural organization of HDL2 and HDL3.

摘要

通过速率区带密度梯度超速离心法将人血清中的高密度脂蛋白(HDL)亚组分分离为HDL2和HDL3。利用光敏糖脂探针2-(4-叠氮基-2-硝基苯氧基)-棕榈酰基[1-14C]葡萄糖胺(化合物A)和12-(4-叠氮基-2-硝基苯氧基)-硬脂酰基[1-14C]葡萄糖胺(化合物B)研究了这些亚组分中载脂蛋白(apo)A-I和A-II的取向。两种探针均以每颗粒两或三个探针分子的比例添加到HDL结构中,并通过在340nm以上波长的光照下进行光活化。脱脂后,通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析探针-载脂蛋白加合物。“浅”探针(化合物A)和“深”探针(化合物B)与HDL3中的apoA-I和apoA-II结合的量为添加标记的10-14%,与HDL2中的apoA-I和apoA-II结合的量约为6%。考虑到apoA-I和apoA-II的相对含量,估计“浅”探针在HDL2和HDL3中标记apoA-I的效率比apoA-II高40%;“深”探针在两个亚组分中标记apoA-I和apoA-II的效果相同。数据表明,在HDL2和HDL3的表面,apoA-I的比例相对大于apoA-II,而在核心部分,两个亚组分中apoA-I和apoA-II的比例相等。这些光标记的应用未能指出HDL2和HDL3在结构组织上的差异。

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