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α-衔接蛋白是一种内吞作用的标志物,在果蝇发育过程中以复杂的模式表达。

Alpha-adaptin, a marker for endocytosis, is expressed in complex patterns during Drosophila development.

作者信息

Dornan S, Jackson A P, Gay N J

机构信息

Department of Biochemistry, University of Cambridge, United Kingdom.

出版信息

Mol Biol Cell. 1997 Aug;8(8):1391-403. doi: 10.1091/mbc.8.8.1391.

Abstract

A Drosophila cDNA encoding a structural homologue of the mammalian coated vesicle component alpha-adaptin (AP2 adaptor complex) has been cloned and sequenced. The mammalian and invertebrate sequences are highly conserved, especially within the amino terminal region, a domain that mediates interactions with other components within the AP2 complex and with specific receptors tails. Mammalian alpha-adaptins are encoded by two genes; however, Drosophila alpha-adaptin has a single gene locus, within polytene bands 21C2-C3 on the left arm of the chromosome 2, closely adjacent to the paired homeobox gene aristaless. There seem to be at least two Drosophila alpha-adaptin transcripts expressed, plausibly by alternative splicing. One of the transcripts is more abundant during early embryogenesis and may be of maternal origin. We have studied the distribution of the alpha-adaptin protein throughout embryogenesis and at the neuromuscular junction of the third instar larva. During cellularization of the blastoderm embryo, the protein is seen between and ahead of the elongating nuclei, and then redistributes to the cell surface during gastrulation. These observations suggest a role for endocytosis in cellularization and are consistent with the finding that dynamin (the shibire gene product), another component of the endocytic mechanism, is required for cellularization. At later stages of embryogenesis, alpha-adaptin is expressed in complex and dynamic patterns. It is strongly induced in elements of the central and peripheral nervous system (e.g., in neuroblasts, the presumptive stomatogastric nervous system, and the lateral chordotonal sense organs), in the Garland cells, the adult midgut precursors, the antenno-maxillary complex, the endoderm, the fat bodies, and the visceral mesoderm. In the larva, alpha-adaptin is localized at the plasma membrane in the synaptic boutons of the neuromuscular junctions. The cells expressing high levels of alpha-adaptin are known or expected to support high levels of endocytosis; thus, this coated vesicle protein seems to be an excellent marker for endocytic activity. The expression patterns of dynamin, detected in the embryo by in situ hybridization methods, are very similar to those reported here for alpha-adaptin reflecting the likely coordinated expression of endocytic components. Taken together with previous evidence, our results suggest that endosomal vesicle trafficking, membrane recycling, and the regulation of endocytosis play critical roles in the wide range of developmental processes.

摘要

已克隆并测序了一个编码哺乳动物被膜小泡成分α-衔接蛋白(AP2衔接复合体)结构同源物的果蝇cDNA。哺乳动物和无脊椎动物的序列高度保守,尤其是在氨基末端区域,该区域介导与AP2复合体内其他成分以及特定受体尾部的相互作用。哺乳动物的α-衔接蛋白由两个基因编码;然而,果蝇的α-衔接蛋白有一个单一的基因座,位于2号染色体左臂的多线带21C2-C3内,紧邻配对的同源框基因无触角。似乎至少有两种果蝇α-衔接蛋白转录本,可能是通过可变剪接产生的。其中一种转录本在胚胎早期发育过程中更为丰富,可能来自母体。我们研究了α-衔接蛋白在整个胚胎发育过程中以及在三龄幼虫神经肌肉接头处的分布。在胚盘胚胎细胞化过程中,该蛋白出现在伸长的细胞核之间和前方,然后在原肠胚形成过程中重新分布到细胞表面。这些观察结果表明内吞作用在细胞化过程中起作用,并且与内吞机制的另一个成分发动蛋白(希比雷基因产物)在细胞化过程中是必需的这一发现一致。在胚胎发育的后期阶段,α-衔接蛋白以复杂且动态的模式表达。它在中枢和外周神经系统的成分中强烈诱导表达(例如,在神经母细胞中、假定的口胃神经系统和侧弦音感觉器官中)、在加兰细胞、成虫中肠前体、触角-上颌复合体、内胚层、脂肪体和内脏中胚层中表达。在幼虫中,α-衔接蛋白定位于神经肌肉接头突触小体的质膜上。已知或预期表达高水平α-衔接蛋白的细胞支持高水平的内吞作用;因此,这种被膜小泡蛋白似乎是内吞活性的一个极好标记。通过原位杂交方法在胚胎中检测到的发动蛋白的表达模式与这里报道的α-衔接蛋白的表达模式非常相似,这反映了内吞成分可能的协调表达。结合先前的证据,我们的结果表明内体小泡运输、膜循环和内吞作用的调节在广泛的发育过程中起关键作用。

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