McKeown C, Praitis V, Austin J
Department of Molecular Genetics and Cell Biology, University of Chicago, Chicago, IL 60637, USA.
Development. 1998 Jun;125(11):2087-98. doi: 10.1242/dev.125.11.2087.
Morphogenesis transforms the C. elegans embryo from a ball of cells into a vermiform larva. During this transformation, the embryo increases fourfold in length; present data indicates this elongation results from contraction of the epidermal actin cytoskeleton. In sma-1 mutants, the extent of embryonic elongation is decreased and the resulting sma-1 larvae, although viable, are shorter than normal. We find that sma-1 mutants elongate for the same length of time as wild-type embryos, but at a decreased rate. The sma-1 mutants we have isolated vary in phenotypic severity, with the most severe alleles showing the greatest decrease in elongation rate. The sma-1 gene encodes a homolog of betaH-spectrin, a novel beta-spectrin isoform first identified in Drosophila. sma-1 RNA is expressed in epithelial tissues in the C. elegans embryo: in the embryonic epidermis at the start of morphogenesis and subsequently in the developing pharynx, intestine and excretory cell. In Drosophila, betaH-spectrin associates with the apical plasma membrane of epithelial cells; beta-spectrin is found at the lateral membrane. We propose that SMA-1 is a component of an apical membrane skeleton in the C. elegans embryonic epidermis that determines the rate of elongation during morphogenesis.
形态发生将秀丽隐杆线虫胚胎从一个细胞球转变为蠕虫状幼虫。在这个转变过程中,胚胎长度增加四倍;目前的数据表明这种伸长是由表皮肌动蛋白细胞骨架的收缩引起的。在sma-1突变体中,胚胎伸长的程度降低,产生的sma-1幼虫虽然能够存活,但比正常幼虫短。我们发现sma-1突变体与野生型胚胎伸长的时间相同,但速率降低。我们分离出的sma-1突变体表型严重程度各不相同,最严重的等位基因显示伸长率下降最大。sma-1基因编码βH-血影蛋白的同源物,βH-血影蛋白是一种首次在果蝇中鉴定出的新型β-血影蛋白异构体。sma-1 RNA在秀丽隐杆线虫胚胎的上皮组织中表达:在形态发生开始时在胚胎表皮中表达,随后在发育中的咽部、肠道和排泄细胞中表达。在果蝇中,βH-血影蛋白与上皮细胞的顶端质膜相关联;β-血影蛋白存在于侧膜中。我们提出SMA-1是秀丽隐杆线虫胚胎表皮顶端膜骨架的一个组成部分,它决定了形态发生过程中的伸长速率。