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在果蝇唾液腺迁移过程中,不同的Wnt信号通过卷曲蛋白(Frizzled)和受体酪氨酸激酶(RYK)受体发挥作用。

Different Wnt signals act through the Frizzled and RYK receptors during Drosophila salivary gland migration.

作者信息

Harris Katherine E, Beckendorf Steven K

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720, USA.

出版信息

Development. 2007 Jun;134(11):2017-25. doi: 10.1242/dev.001164.

Abstract

Guided cell migration is necessary for the proper function and development of many tissues, one of which is the Drosophila embryonic salivary gland. Here we show that two distinct Wnt signaling pathways regulate salivary gland migration. Early in migration, the salivary gland responds to a WNT4-Frizzled signal for proper positioning within the embryo. Disruption of this signal, through mutations in Wnt4, frizzled or frizzled 2, results in misguided salivary glands that curve ventrally. Furthermore, disruption of downstream components of the canonical Wnt pathway, such as dishevelled or Tcf, also results in ventrally curved salivary glands. Analysis of a second Wnt signal, which acts through the atypical Wnt receptor Derailed, indicates a requirement for Wnt5 signaling late in salivary gland migration. WNT5 is expressed in the central nervous system and acts as a repulsive signal, needed to keep the migrating salivary gland on course. The receptor for WNT5, Derailed, is expressed in the actively migrating tip of the salivary glands. In embryos mutant for derailed or Wnt5, salivary gland migration is disrupted; the tip of the gland migrates abnormally toward the central nervous system. Our results suggest that both the Wnt4-frizzled pathway and a separate Wnt5-derailed pathway are needed for proper salivary gland migration.

摘要

引导细胞迁移对于许多组织的正常功能和发育至关重要,果蝇胚胎唾液腺就是其中之一。我们在此表明,两条不同的Wnt信号通路调节唾液腺迁移。在迁移早期,唾液腺对WNT4 - Frizzled信号作出反应,以便在胚胎内正确定位。通过Wnt4、Frizzled或Frizzled 2的突变破坏该信号,会导致唾液腺定位错误并向腹侧弯曲。此外,破坏经典Wnt通路的下游成分,如蓬乱蛋白或Tcf,也会导致唾液腺向腹侧弯曲。对通过非典型Wnt受体脱轨蛋白起作用的第二个Wnt信号的分析表明,在唾液腺迁移后期需要Wnt5信号。WNT5在中枢神经系统中表达,并作为一种排斥信号,使迁移中的唾液腺保持在正确路径上。WNT5的受体脱轨蛋白在唾液腺活跃迁移的顶端表达。在脱轨蛋白或Wnt5突变的胚胎中,唾液腺迁移受到破坏;腺体顶端异常地向中枢神经系统迁移。我们的结果表明,Wnt4 - Frizzled通路和独立的Wnt5 - 脱轨蛋白通路对于唾液腺的正常迁移都是必需的。

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