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线虫唯一的 Daughterless/E 蛋白同源物 HLH-2 对神经系统发育的细胞特异性影响。

Cell-specific effects of the sole C. elegans Daughterless/E protein homolog, HLH-2, on nervous system development.

机构信息

Department of Biological Sciences, Columbia University, Howard Hughes Medical Institute, New York, NY 10027, USA.

Institute of Genetics, Technische Universität Braunschweig, 38106 Braunschweig, Germany.

出版信息

Development. 2023 Jan 1;150(1). doi: 10.1242/dev.201366. Epub 2023 Jan 3.

Abstract

Are there common mechanisms of neurogenesis used throughout an entire nervous system? We explored to what extent canonical proneural class I/II bHLH complexes are responsible for neurogenesis throughout the entire Caenorhabditis elegans nervous system. Distinct, lineage-specific proneural class II bHLH factors are generally thought to operate via interaction with a common, class I bHLH subunit, encoded by Daughterless in flies, the E proteins in vertebrates and HLH-2 in C. elegans. To eliminate function of all proneuronal class I/II bHLH complexes, we therefore genetically removed maternal and zygotic hlh-2 gene activity. We observed broad effects on neurogenesis, but still detected normal neurogenesis in many distinct neuron-producing lineages of the central and peripheral nervous system. Moreover, we found that hlh-2 selectively affects some aspects of neuron differentiation while leaving others unaffected. Although our studies confirm the function of proneuronal class I/II bHLH complexes in many different lineages throughout a nervous system, we conclude that their function is not universal, but rather restricted by lineage, cell type and components of differentiation programs affected.

摘要

整个神经系统是否存在共同的神经发生机制?我们探讨了经典的神经前体细胞 I/II bHLH 复合物在多大程度上负责整个秀丽隐杆线虫神经系统的神经发生。通常认为,不同的、谱系特异性的神经前体细胞 II bHLH 因子通过与一个共同的 I 类 bHLH 亚基相互作用来发挥作用,该亚基在果蝇中由无女儿基因编码,在脊椎动物中由 E 蛋白编码,在秀丽隐杆线虫中由 HLH-2 编码。为了消除所有神经前体细胞 I/II bHLH 复合物的功能,我们因此遗传去除了母体和合子 hlh-2 基因的活性。我们观察到对神经发生有广泛的影响,但在中枢和周围神经系统的许多不同产生神经元的谱系中仍然检测到正常的神经发生。此外,我们发现 hlh-2 选择性地影响神经元分化的某些方面,而不影响其他方面。尽管我们的研究证实了神经前体细胞 I/II bHLH 复合物在神经系统中许多不同谱系中的功能,但我们得出结论,它们的功能不是普遍的,而是受到谱系、细胞类型和受影响的分化程序组件的限制。

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