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昆虫脂质转运颗粒可通过载体介导机制促进脂质的净矢量转运。

Insect lipid transfer particle can facilitate net vectorial lipid transfer via a carrier-mediated mechanism.

作者信息

Blacklock B J, Smillie M, Ryan R O

机构信息

Lipid and Lipoprotein Research Group, University of Alberta, Edmonton, Canada.

出版信息

J Biol Chem. 1992 Jul 15;267(20):14033-7.

PMID:1629202
Abstract

The mechanism of facilitated lipid transfer by insect or mammalian plasma lipid transfer proteins has not been elucidated. Transfer catalysts may act as carriers of lipid between donor and acceptor lipoproteins or, alternatively, transfer may require formation of a ternary complex. This study was designed to determine if Manduca sexta hemolymph lipid transfer particle (LTP) can facilitate net vectorial transfer of lipid without concomitant contact between donor and acceptor lipoproteins and LTP. M. sexta [3H]diacylglycerol-high density lipophorin-larval ([3H]DAG-HDLp-L) and human low density lipoprotein (LDL) were covalently bound to Sepharose matrices and packed into separate columns. In incubations lacking LTP, greater than 98% of the recovered DAG remained associated with HDLp-L. An unrelated hemolymph storage protein, arylphorin, was unable to catalyze the transfer of DAG between solid-phase lipoproteins. Facilitated transfer of DAG from HDLp-L to LDL was observed when LTP was circulated between the columns. Under these conditions, facilitated transfer occurred at a rate of 2.24 ng of DAG/h (versus 0.16 microgram of DAG/h in the control), and after 16 h greater than 26% of recovered labeled DAG was transferred to LDL. This corresponds to a 14-fold rate enhancement induced by LTP. The LTP-specific transfer of DAG between physically separated lipoproteins demonstrates the ability of LTP to facilitate net lipid transfer via a carrier-mediated mechanism in the absence of a ternary complex involving donor, acceptor, and catalyst. In experiments aimed at assessing the relative contribution of ternary complex formation to DAG transfer, acceptor LDL was circulated with HDLp-L remaining immobilized. Under these conditions, LTP induced a 13-fold rate enhancement from 1.3 to 16.3 micrograms of DAG/h. The similar rate enhancements observed with both lipoproteins bound and only donor bound suggest the overall contribution of ternary complex formation to facilitated lipid transfer is insignificant. The described system should prove useful in mechanistic studies of other transfer proteins as well as studies of transfer of other lipids.

摘要

昆虫或哺乳动物血浆脂质转运蛋白促进脂质转移的机制尚未阐明。转运催化剂可能作为脂质在供体和受体脂蛋白之间的载体,或者,转运可能需要形成三元复合物。本研究旨在确定烟草天蛾血淋巴脂质转运颗粒(LTP)是否能在供体和受体脂蛋白与LTP之间不发生接触的情况下促进脂质的净向量转移。将烟草天蛾[3H]二酰甘油 - 高密度脂蛋白 - 幼虫([3H]DAG - HDLp - L)和人低密度脂蛋白(LDL)共价结合到琼脂糖基质上,并装入单独的柱中。在缺乏LTP的孵育中,回收的DAG中超过98%仍与HDLp - L相关联。一种无关的血淋巴储存蛋白,芳基脂蛋白,无法催化固相脂蛋白之间DAG的转移。当LTP在柱之间循环时,观察到DAG从HDLp - L向LDL的促进转移。在这些条件下,促进转移的速率为2.24 ng DAG/小时(对照为0.16μg DAG/小时),16小时后,超过26%回收的标记DAG转移到了LDL。这相当于LTP诱导的速率提高了14倍。在物理分离的脂蛋白之间DAG的LTP特异性转移证明了LTP在不存在涉及供体、受体和催化剂的三元复合物的情况下,通过载体介导机制促进脂质净转移的能力。在旨在评估三元复合物形成对DAG转移的相对贡献的实验中,受体LDL与固定的HDLp - L一起循环。在这些条件下,LTP使速率从1.3μg DAG/小时提高到16.3μg DAG/小时,提高了13倍。在脂蛋白都结合和仅供体结合的情况下观察到相似的速率提高,这表明三元复合物形成对促进脂质转移的总体贡献微不足道。所描述的系统应证明对其他转移蛋白的机制研究以及其他脂质转移的研究有用。

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