Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.
Genetics. 2023 Nov 1;225(3). doi: 10.1093/genetics/iyad165.
In addition to inducing nonautonomous specification of cell fate in both Drosophila and vertebrates, the Hedgehog pathway guides cell migration in a variety of different tissues. Although its role in axon guidance in the vertebrate nervous system is widely recognized, its role in guiding the migratory path of primordial germ cells (PGCs) from the outside surface of the Drosophila embryo through the midgut and mesoderm to the SGPs (somatic gonadal precursors) has been controversial. Here we present new experiments demonstrating (1) that Hh produced by mesodermal cells guides PGC migration, (2) that HMG CoenzymeA reductase (Hmgcr) potentiates guidance signals emanating from the SGPs, functioning upstream of hh and of 2 Hh pathway genes important for Hh-containing cytonemes, and (3) that factors required in Hh receiving cells in other contexts function in PGCs to help direct migration toward the SGPs. We also compare the data reported by 4 different laboratories that have studied the role of the Hh pathway in guiding PGC migration.
除了在果蝇和脊椎动物中诱导非自主的细胞命运特化,Hedgehog 途径还在多种不同组织中引导细胞迁移。尽管它在脊椎动物神经系统中的轴突导向中的作用已被广泛认可,但它在引导原始生殖细胞(PGC)从果蝇胚胎的外表面通过中肠和中胚层迁移到 SGPs(体生殖前体细胞)的过程中的作用一直存在争议。在这里,我们提出了新的实验结果,证明了(1)中胚层细胞产生的 Hh 指导 PGC 的迁移,(2)HMG CoenzymeA 还原酶(Hmgcr)增强了来自 SGPs 的引导信号,在 hh 和对含有 Hh 的纤毛至关重要的 2 个 Hh 途径基因之前起作用,(3)在其他情况下,Hh 接收细胞中所需的因子在 PGC 中发挥作用,有助于指导向 SGPs 的迁移。我们还比较了 4 个不同实验室报告的关于 Hh 途径在指导 PGC 迁移中的作用的数据。