首页> 美国卫生研究院文献>Genetics >Genetic interactions between the RhoA and Stubble-stubbloid loci suggest a role for a type II transmembrane serine protease in intracellular signaling during Drosophila imaginal disc morphogenesis.
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Genetic interactions between the RhoA and Stubble-stubbloid loci suggest a role for a type II transmembrane serine protease in intracellular signaling during Drosophila imaginal disc morphogenesis.

机译:RhoA和残茬-茎茎基因座之间的遗传相互作用表明果蝇想象的椎间盘形态发生过程中II型跨膜丝氨酸蛋白酶在细胞内信号传导中的作用。

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摘要

The Drosophila RhoA (Rho1) GTPase is essential for postembryonic morphogenesis of leg and wing imaginal discs. Mutations in RhoA enhance leg and wing defects associated with mutations in zipper, the gene encoding the heavy chain of nonmuscle myosin II. We demonstrate here that mutations affecting the RhoA signaling pathway also interact genetically with mutations in the Stubble-stubbloid (Sb-sbd) locus that encodes an unusual type II transmembrane serine protease required for normal leg and wing morphogenesis. In addition, a leg malformation phenotype associated with overexpression of Sb-sbd in prepupal leg discs is suppressed when RhoA gene dose is reduced, suggesting that RhoA and Sb-sbd act in a common pathway during leg morphogenesis. We also characterized six mutations identified as enhancers of zipper mutant leg defects. Three of these genes encode known members of the RhoA signaling pathway (RhoA, DRhoGEF2, and zipper). The remaining three enhancer of zipper mutations interact genetically with both RhoA and Sb-sbd mutations, suggesting that they encode additional components of the RhoA signaling pathway in imaginal discs. Our results provide evidence that the type II transmembrane serine proteases, a class of proteins linked to human developmental abnormalities and pathology, may be associated with intracellular signaling required for normal development.
机译:果蝇RhoA(Rho1)GTPase对腿和翅膀的假想椎间盘的胚胎后形态发生至关重要。 RhoA中的突变增强了与拉链中突变相关的腿和翼缺陷,而拉链是编码非肌肉肌球蛋白II重链的基因。我们在这里证明,影响RhoA信号通路的突变也与胡茬小茎(Sb-sbd)位点的突变发生遗传相互作用,该位点编码正常腿和翼形态发生所需的不寻常的II型跨膜丝氨酸蛋白酶。另外,当减少RhoA基因剂量时,可抑制与pu前腿间盘中Sb-sbd过表达相关的腿畸形表型,这表明RhoA和Sb-sbd在腿形态发生过程中以共同的途径起作用。我们还表征了六个突变,这些突变被鉴定为拉链突变型腿缺陷的增强子。这些基因中的三个编码RhoA信号通路的已知成员(RhoA,DRhoGEF2和拉链)。拉链突变的其余三个增强子与RhoA和Sb-sbd突变在遗传上相互作用,表明它们编码了假想椎间盘中RhoA信号传导途径的其他成分。我们的结果提供了证据,即II型跨膜丝氨酸蛋白酶是与人类发育异常和病理相关的一类蛋白质,可能与正常发育所需的细胞内信号传导有关。

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