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Tal1、Gata2a和Gata3在V2b和脑脊液接触性KA脊髓神经元的发育中具有不同功能。

Tal1, Gata2a, and Gata3 Have Distinct Functions in the Development of V2b and Cerebrospinal Fluid-Contacting KA Spinal Neurons.

作者信息

Andrzejczuk Livia A, Banerjee Santanu, England Samantha J, Voufo Christiane, Kamara Kadiah, Lewis Katharine E

机构信息

Department of Biology, Syracuse University, Syracuse, NY, United States.

出版信息

Front Neurosci. 2018 Mar 29;12:170. doi: 10.3389/fnins.2018.00170. eCollection 2018.

Abstract

Vertebrate locomotor circuitry contains distinct classes of ventral spinal cord neurons which each have particular functional properties. While we know some of the genes expressed by each of these cell types, we do not yet know how several of these neurons are specified. Here, we investigate the functions of Tal1, Gata2a, and Gata3 transcription factors in the development of two of these populations of neurons with important roles in locomotor circuitry: V2b neurons and cerebrospinal fluid-contacting Kolmer-Agduhr (KA) neurons (also called CSF-cNs). Our data provide the first demonstration, in any vertebrate, that Tal1 and Gata3 are required for correct development of KA and V2b neurons, respectively. We also uncover differences in the genetic regulation of V2b cell development in zebrafish compared to mouse. In addition, we demonstrate that Sox1a and Sox1b are expressed by KA and V2b neurons in zebrafish, which differs from mouse, where Sox1 is expressed by V2c neurons. KA neurons can be divided into ventral KA″ neurons and more dorsal KA' neurons. Consistent with previous morpholino experiments, our mutant data suggest that Tal1 and Gata3 are required in KA' but not KA″ cells, whereas Gata2a is required in KA″ but not KA' cells, even though both of these cell types co-express all three of these transcription factors. In mutants, cells in the KA″ region of the spinal cord lose expression of most KA″ genes and there is an increase in the number of cells expressing V3 genes, suggesting that Gata2a is required to specify KA″ and repress V3 fates in cells that normally develop into KA″ neurons. On the other hand, our data suggest that Gata3 and Tal1 are both required for KA' neurons to differentiate from progenitor cells. In the KA' region of these mutants, cells no longer express KA' markers and there is an increase in the number of mitotically-active cells. Finally, our data demonstrate that all three of these transcription factors are required for later stages of V2b neuron differentiation and that Gata2a and Tal1 have different functions in V2b development in zebrafish than in mouse.

摘要

脊椎动物的运动神经回路包含不同类别的脊髓腹侧神经元,每个神经元都具有特定的功能特性。虽然我们知道这些细胞类型各自表达的一些基因,但我们尚不清楚其中几种神经元是如何被特化的。在这里,我们研究了Tal1、Gata2a和Gata3转录因子在运动神经回路中起重要作用的两类神经元发育中的功能:V2b神经元和接触脑脊液的科尔默-阿格杜尔(KA)神经元(也称为脑脊液接触神经元,即CSF-cNs)。我们的数据首次在任何脊椎动物中证明,Tal1和Gata3分别是KA和V2b神经元正确发育所必需的。我们还发现,与小鼠相比,斑马鱼中V2b细胞发育的基因调控存在差异。此外,我们证明Sox1a和Sox1b在斑马鱼的KA和V2b神经元中表达,这与小鼠不同,在小鼠中Sox1由V2c神经元表达。KA神经元可分为腹侧的KA″神经元和背侧较多的KA'神经元。与之前的吗啉代实验一致,我们的突变体数据表明,Tal1和Gata3在KA'细胞而非KA″细胞中是必需的,而Gata2a在KA″细胞而非KA'细胞中是必需的,尽管这两种细胞类型都共同表达所有这三种转录因子。在突变体中,脊髓KA″区域的细胞失去了大多数KA″基因的表达,并且表达V3基因的细胞数量增加,这表明Gata2a对于指定KA″并抑制正常发育为KA″神经元的细胞中的V3命运是必需的。另一方面,我们的数据表明,Gata3和Tal1都是KA'神经元从祖细胞分化所必需的。在这些突变体的KA'区域,细胞不再表达KA'标记,并且有丝分裂活跃细胞的数量增加。最后,我们的数据表明,所有这三种转录因子都是V2b神经元分化后期所必需的,并且Gata2a和Tal1在斑马鱼V2b发育中的功能与在小鼠中不同。

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