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mig-38 a novel gene that regulates distal tip cell turning during gonadogenesis in C. elegans hermaphrodites

机译:MIG-38一种新的基因其调节在C.秀丽隐杆菌雌雄同体中的腺体发生期间转动的远端尖端电池

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摘要

In Caenorhabditis elegans gonad morphogenesis, the final U-shapes of the two hermaphrodite gonad arms are determined by migration of the distal tip cells (DTCs). These somatic cells migrate in opposite directions on the ventral basement membrane until specific extracellular cues induce turning from ventral to dorsal and then centripetally toward the midbody region on the dorsal basement membrane. To dissect the mechanism of DTC turning, we examined the role of a novel gene, F40F11.2/mig-38, whose depletion by RNAi results in failure of DTC turning so that DTCs continue their migration away from the midbody region. mig-38 is expressed in the gonad primordium, and expression continues throughout DTC migration where it acts cell-autonomously to control DTC turning. RNAi depletion of both mig-38 and ina-1, which encodes an integrin adhesion receptor, enhanced the loss of turning phenotype indicating a genetic interaction between these genes. Furthermore, the integrin-associated protein MIG-15/Nck-interacting kinase (NIK) works with MIG-38 to direct DTC turning as shown by mig-38 RNAi with the mig-15(rh80) hypomorph. These results indicate that MIG-38 enhances the role of MIG-15 in integrin-dependent DTC turning. Knockdown of talin, a protein that is important for integrin activation, causes the DTCs to stop migration prematurely. When both talin and MIG-38 were depleted by RNAi treatment, the premature stop phenotype was suppressed. This suppression effect was reversed upon additional depletion of MIG-15 or its binding partner NCK-1. These results suggest that both talin and the MIG-15/NCK-1 complex promote DTC motility and that MIG-38 may act as a negative regulator of the complex. We propose a model to explain the dual role of MIG-38 in motility and turning.
机译:在Caenorhabditis elegans Gonad形态发生中,通过远端尖端电池(DTC)迁移来确定两个雌雄同体Gonad臂的最终U形。这些体细胞在腹侧基底膜上的相反方向上迁移,直到特异的细胞外提示诱导从腹侧腹部转向背部,然后向朝向背部地下室膜的中间区域向心以点心。为了描述DTC转向的机制,我们研究了新型基因F40F11.2 / MIG-38的作用,RNAI的耗尽导致DTC转弯的失效,使得DTC继续迁移远离越野地区。 MIG-38在Gonad原始中表达,并且表达在整个DTC迁移过程中继续,其中它起到自主地控制DTC转动。 RNAi耗尽MIG-38和INA-1,其编码整联蛋白粘附受体,增强了表型的损失,表明这些基因之间的遗传相互作用。此外,整联蛋白相关的蛋白质MIG-15 / NCK相互作用的激酶(NIK)与MIG-38合作,以直接DTC转动,如MIG-38 RNAi与MIG-15(RH80)戊骨。这些结果表明MIG-38增强了MIG-15在整合素依赖性DTC转动中的作用。山间敲击是整合素激活的蛋白质,使得DTC在过早地停止迁移。当RNAI处理耗尽塔林和MIG-38时,抑制过早的停止表型。在MIG-15的额外耗尽或其结合伴中NCK-1的额外耗尽时,这种抑制效果逆转。这些结果表明,塔林和MIG-15 / NCK-1复合物促进了DTC运动,并且MIG-38可以用作复合物的负调节剂。我们提出了一种模型来解释MIG-38在运动和转向中的双重作用。

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