Bogerd J, Babin P J, Kooiman F P, André M, Ballagny C, van Marrewijk W J, van der Horst D J
Biochemical Physiology Research Group, Faculty of Biology and Institute of Biomembranes, Utrecht University, 3584 CH Utrecht, The Netherlands.
J Comp Neurol. 2000 Nov 27;427(4):546-58. doi: 10.1002/1096-9861(20001127)427:4<546::aid-cne4>3.0.co;2-h.
The transport of lipids via the circulatory system of animals constitutes a vital function that uses highly specialized lipoprotein complexes. In insects, a single lipoprotein, lipophorin, serves as a reusable shuttle for the transport of lipids between tissues. We have found that the two nonexchangeable apolipoproteins of lipophorin arise from a common precursor protein, apolipophorin II/I (apoLp-II/I). To examine the mechanisms of transport of lipids and liposoluble substances inside the central nervous system, this report provides the molecular cloning of a cDNA encoding the locust apoLp-II/I. We have recently shown that this precursor protein belongs to a superfamily of large lipid transfer proteins (Babin et al. [1999] J. Mol. Evol. 49:150-160). We determined that, in addition to its expression in the fat body, the locust apoLp-II/I is also expressed in the brain. Part of the signal resulted from fat body tissue associated with the brain; however, apoLp-II/I was strongly expressed and the corresponding protein detected, in pigmented glial cells of the lamina underlying the locust retina and in cells or cellular processes interspersed in the basement membrane. The latter finding strongly suggests an implication of apolipophorins in the transport of retinoids and/or fatty acids to the insect retina.
脂质通过动物循环系统的运输是一项至关重要的功能,该过程使用高度专业化的脂蛋白复合物。在昆虫中,单一的脂蛋白——脂转运蛋白,作为一种可重复使用的载体,在组织间运输脂质。我们发现脂转运蛋白的两种非交换性载脂蛋白源自一种共同的前体蛋白——载脂蛋白II/I(apoLp-II/I)。为了研究脂质和脂溶性物质在中枢神经系统内的运输机制,本报告提供了编码蝗虫apoLp-II/I的cDNA的分子克隆。我们最近表明,这种前体蛋白属于大型脂质转运蛋白超家族(Babin等人[1999]《分子进化杂志》49:150 - 160)。我们确定,除了在脂肪体中表达外,蝗虫apoLp-II/I在脑中也有表达。部分信号来自与脑相关的脂肪体组织;然而,在蝗虫视网膜下方神经毡的色素神经胶质细胞以及散布在基底膜中的细胞或细胞突起中,apoLp-II/I强烈表达且检测到了相应的蛋白质。后一发现强烈表明载脂蛋白在类视黄醇和/或脂肪酸向昆虫视网膜的运输中发挥作用。