Institute of Neuroscience, National Yang-Ming University, Taipei, Taiwan.
Department of Developmental Biology, Graduate School of Medicine, Chiba University, Chiba, Japan.
J Comp Neurol. 2020 Oct;528(14):2404-2419. doi: 10.1002/cne.24900. Epub 2020 Mar 24.
GABAergic interneurons play an essential role in modulating cortical networks. The progenitor domains of cortical interneurons are localized in developing ventral forebrain, including the medial ganglionic eminence (MGE), caudal ganglionic eminence (CGE), preoptic area (POA), and preoptic hypothalamic border domain (POH). Here, we characterized the expression pattern of Zswim5, an MGE-enriched gene in the mouse forebrain. At E11.5-E13.5, prominent Zswim5 expression was detected in the subventricular zone (SVZ) of MGE, POA, and POH, but not CGE of ventral telencephalon where progenitors of cortical interneurons resided. At E15.5 and E17.5, Zswim5 expression remained in the MGE/pallidum primordium and ventral germinal zone. Zswim5 mRNA was markedly decreased after birth and was absent in the adult forebrain. Interestingly, the Zswim5 expression pattern resembled the tangential migration pathways of cortical interneurons. Zswim5-positive cells in the MGE appeared to migrate from the MGE through the SVZ of LGE to overlying neocortex. Indeed, Zswim5 was co-localized with Nkx2.1 and Lhx6, markers of progenitors and migratory cortical interneurons. Double labeling showed that Ascl1/Mash1-positive cells co-expressed Zswim5. Zswim5 expressing cells contained none or at most low levels of Ki67 but co-expressed Tuj1 in the SVZ of MGE. These results suggest that Zswim5 is immediately upregulated as progenitors exiting cell cycle become postmitotic. Given that recent studies have elucidated that the cell fate of cortical interneurons is determined shortly after becoming postmitotic, the timing of Zswim5 expression in early postmitotic interneurons suggests a potential role of Zswim5 in regulation of neurogenesis and tangential migration of cortical interneurons.
GABA 能中间神经元在调节皮质网络方面起着至关重要的作用。皮质中间神经元的祖细胞域定位于发育中的腹侧前脑,包括内侧神经节隆起(MGE)、尾状神经节隆起(CGE)、视前区(POA)和视前下丘脑边界区(POH)。在这里,我们描述了 Zswim5 的表达模式,Zswim5 是一种在小鼠前脑中丰富的 MGE 基因。在 E11.5-E13.5 时,明显的 Zswim5 表达在 MGE、POA 和 POH 的脑室下区(SVZ)中检测到,但不在皮质中间神经元祖细胞所在的腹侧端脑的 CGE 中检测到。在 E15.5 和 E17.5 时,Zswim5 表达仍存在于 MGE/苍白球原基和腹侧生殖区。Zswim5mRNA 在出生后显著减少,在成年前脑中不存在。有趣的是,Zswim5 的表达模式类似于皮质中间神经元的切线迁移途径。MGE 中的 Zswim5 阳性细胞似乎从 MGE 通过 LGE 的 SVZ 迁移到覆盖的新皮质。事实上,Zswim5 与 Nkx2.1 和 Lhx6 共定位,Nkx2.1 和 Lhx6 是祖细胞和迁移性皮质中间神经元的标志物。双标记显示,Ascl1/Mash1 阳性细胞共表达 Zswim5。在 MGE 的 SVZ 中,表达 Zswim5 的细胞不含或仅表达低水平的 Ki67,但共表达 Tuj1。这些结果表明,Zswim5 在退出细胞周期的祖细胞成为有丝分裂后立即上调。鉴于最近的研究阐明了皮质中间神经元的细胞命运在成为有丝分裂后不久就被决定,早期有丝分裂后中间神经元中 Zswim5 的表达时间提示 Zswim5 可能在调节神经发生和皮质中间神经元的切线迁移中发挥作用。