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Studies on function of MC5 molecule that is a novel membrane-type metalloproteinase of astacin family during morphogenesis of the starfish, Asterina pectinifera

机译:MC5分子的功能研究,即亚斯卡林家族的新型膜型金属蛋白酶在海星,Asterina Pectinifera的形态发生

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MC5 molecule that exclusively expresses on the surface of embryonic mesenchyme cells (MCs) of starfish, Asterina pectinifera, newly comes within the category of metalloproteinase of astacin family. We studied the problem of how this novel membrane-type metalloproteinase functions during morphogenesis of the starfish. Inhibition experiments of MC5 molecule expression by use of Morpholino antisense oligonucleotides (MC5-MAO) reveals a phenotype as being "dwarfed effect"; those are, (1) Injection of the egg with MC5-MAO causes the larva to be significantly smaller, accompanied by a decrease in cell numbers and suppression of DNA-replication of epithelial cells (ECs) predominating at the body. (2) MC5-MAO injected larva displayed delayed development without inhibiting cell differentiation on nerve, muscle, and stomach cells once reaches the bipinnaria stage. These observations suggest that MC5 molecule positively works for ECs to proliferate. This hypothesis was proved by overexpression of MC5 mRNA and rescue-experiments co-injection with MC5 mRNA and MC5-MAO. Next, we examined the problem whether MCs involve in positive regulation for ECs proliferation. It is observed that although MC5-MAO induces "dwarfed effect" directly on the ECs, the phenotype becomes remarkable after ingression of the MCs into the blastocoel. Moreover, by injecting with MCs into the embryo showing "dwarfed effect", the embryo is shown to gain the DNA-replication meaningfully. Our results suggest that MCs are endowed with inducing activity for the ECs to proliferate during starfish morphogenesis.
机译:新的MC5分子专门表达在海星,Asterina Pectinifera的胚胎间充质细胞(MCS)表面上,新增斯卡辛家族的金属蛋白酶类别。我们研究了这种新型膜型金属蛋白酶在海星的形态发生期间如何运作的问题。 MC5通过使用吗啡氨基反义寡核苷酸(MC5-MAO)抑制MC5分子表达的实验揭示了一种“矮化效应”的表型;那些是,(1)用MC5-MAO注射蛋,使幼虫显着更小,伴随细胞数量和抑制在体内的上皮细胞(ECS)的DNA复制的抑制。 (2)MC5-MAO注射幼虫显示出延迟的发育,而不抑制神经,肌肉和胃细胞的细胞分化一旦到达Bipinnaria阶段。这些观察结果表明MC5分子正积极适用于ECS以增殖。通过与MC5 mRNA和MC5-MAO共注入的MC5 mRNA和救援实验的过表达证明了该假设。接下来,我们研究了MCS是否涉及ECS增殖的正规调节问题。观察到,尽管MC5-MAO直接在ECS上诱导“矮化效应”,但在MCS进入底座的情况下,表型变得显着。此外,通过将MCS注入胚胎显示出“矮化效应”的胚胎,显示胚胎有意义地获得DNA复制。我们的研究结果表明,MCS在海星形态发生期间赋予ECS的诱导活性增殖。

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