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烟草天蛾幼虫-蛹变态过程中脂蛋白组成的变化。

Changes in lipoprotein composition during larval-pupal metamorphosis of an insect, Manduca sexta.

作者信息

Prasad S V, Ryan R O, Law J H, Wells M A

出版信息

J Biol Chem. 1986 Jan 15;261(2):558-62.

PMID:3941091
Abstract

During the transition from the last feeding larval stage to the pupal stage of the tobacco hornworm, Manduca sexta, significant changes occur in the properties of lipophorin, the major hemolymph lipoprotein. Within the first 24 h after cessation of feeding, the larval lipophorin (HDLp-L) is first converted to a higher density form (HDLp-W2) and then HDLp-W2 is converted to a lower density form (HDLp-W1). HDLp-W1 remains in the hemolymph until pupation, when another form, HDLp-P, with a density between HDLp-W1 and HDLp-L, is present. Although all the lipophorins contain identical apoproteins, they differ in lipid content and composition; the differences in density being primarily related to diacylglycerol content. The conversion of HDLp-L to HDLp-W1 is accompanied by a loss of hydrocarbon and uptake of carotenes. These latter changes in lipophorin composition reflect alterations in cuticular lipid composition. HDLp-L was radiolabeled in the apoproteins by injecting animals with 3H-amino acids early in the last larval stage. Subsequently HDLp-L was isolated at the end of the larval stage, HDLp-W2 and HDLp-W1 were isolated during the wandering stage, and HDLp-P was isolated after pupation. The specific activity of the apoproteins in the four lipophorins was not significantly different, suggesting that the observed alterations in lipophorin properties do not require synthesis of new apoproteins but result from retailoring the lipid composition of preexisting molecules. Examination of the hemolymph of individual animals during these transitions showed that only one species of lipoprotein was present, never a mixture of two or more species. These observations suggest that the lipoprotein conversions are precisely timed and that lipoprotein metabolism during larval development and pupation cannot be considered a static process. The unique finding of these studies was that synthesis of lipophorin apoproteins proceeds actively during the first part of the fifth instar but then ceases and does not recommence during the wandering or early pupal stages.

摘要

在烟草天蛾(Manduca sexta)从最后一龄幼虫阶段过渡到蛹期的过程中,主要血淋巴脂蛋白——脂载脂蛋白的特性发生了显著变化。在停止取食后的最初24小时内,幼虫脂载脂蛋白(HDLp-L)首先转变为更高密度的形式(HDLp-W2),然后HDLp-W2又转变为更低密度的形式(HDLp-W1)。HDLp-W1一直留在血淋巴中直至化蛹,此时会出现另一种密度介于HDLp-W1和HDLp-L之间的形式,即HDLp-P。尽管所有脂载脂蛋白都含有相同的载脂蛋白,但它们在脂质含量和组成上存在差异;密度差异主要与二酰甘油含量有关。HDLp-L向HDLp-W1的转变伴随着烃类物质的损失和类胡萝卜素的摄取。脂载脂蛋白组成的这些后期变化反映了表皮脂质组成的改变。在最后一龄幼虫早期给动物注射³H-氨基酸,从而使HDLp-L的载脂蛋白被放射性标记。随后在幼虫阶段结束时分离出HDLp-L,在预蛹期分离出HDLp-W2和HDLp-W1,化蛹后分离出HDLp-P。四种脂载脂蛋白中载脂蛋白的比活性没有显著差异,这表明所观察到的脂载脂蛋白特性变化并不需要合成新的载脂蛋白,而是由对现有分子脂质组成的重新调整导致的。在这些转变过程中对单个动物血淋巴的检查表明,只存在一种脂蛋白,从未出现两种或更多种脂蛋白的混合物。这些观察结果表明,脂蛋白的转变是精确计时的,并且幼虫发育和化蛹过程中的脂蛋白代谢不能被视为一个静态过程。这些研究的独特发现是,脂载脂蛋白载脂蛋白的合成在五龄幼虫的第一阶段活跃进行,但随后停止,在预蛹期或蛹初期不再重新开始。

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