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Bhlhb5 is required for the subtype development of retinal amacrine and bipolar cells in mice

机译:Bhlhb5是小鼠视网膜Amacrine和双极细胞亚型发育所必需的

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Background: BHLHB5, an OLIG-related basic helix-loop-helix transcription factor, is required for the development of a subset of gamma-amino butyric acid-releasing (GABAergic) amacrine cells and OFF-cone bipolar (CB) cells in mouse retinas. In order to determine BHLHB5's functional mechanism in retinogenesis, we used the Cre-loxP recombination system to genetically trace the lineage of BHLHB5+ cells in normal and Bhlhb5-null retinas. The Bhlhb5-Cre knock-in allele was used to activate the constitutive expression of a GFP reporter in the Bhlhb5-expressing cells, and the cell fates of Bhlhb5-lineage cells were identified by using specific cell markers and were compared between normal and Bhlhb5-null retinas. Results: In addition to GABAergic amacrine and OFF-CB cells, Bhlhb5 lineage cells give rise to ganglion, glycinergic amacrine, rod bipolar, ON-bipolar, and rod photoreceptor cells during normal retinal development. Targeted deletion of Bhlhb5 resulted in the loss of GABAergic amacrine, glycinergic amacrine, dopaminergic amacrine, and Type 2 OFF-CB cells. Furthermore, in the absence of BHLHB5, a portion of Bhlhb5 lineage cells switch their fate and differentiate into cholinergic amacrine cells. Conclusions: Our data reveal a broad expression pattern of Bhlhb5 throughout retinogenesis and demonstrate the cell-autonomous as well as non-cell-autonomous role of Bhlhb5 in the specification of amacrine and bipolar subtypes. Developmental Dynamics 243:279-289, 2014.
机译:背景:BHLHB5是一种与OLIG相关的基本螺旋-环-螺旋转录因子,是小鼠视网膜中γ-氨基丁酸释放(GABA能的)无长分泌细胞和OFF-cone双极(CB)细胞子集的发育所必需的。为了确定BHLHB5在视网膜发生中的功能机制,我们使用Cre-loxP重组系统遗传追踪正常和Bhlhb5-null视网膜中BHLHB5 +细胞的谱系。使用Bhlhb5-Cre敲入等位基因激活GFP报告基因在Bhlhb5表达细胞中的组成型表达,并使用特定的细胞标记物鉴定Bhlhb5谱系细胞的细胞命运,并将其与正常细胞和Bhlhb5进行比较。空的视网膜。结果:除了GABA能的无长蛋白和OFF-CB细胞外,Bhlhb5谱系细胞在正常视网膜发育过程中还会产生神经节,甘氨酸能的无蛋白,杆双极,ON双极和杆感光细胞。 Bhlhb5的有针对性的删除导致GABA能的无蛋白,甘油能的无蛋白,多巴胺能的无蛋白和2型OFF-CB细胞的丢失。此外,在缺少BHLHB5的情况下,一部分Bhlhb5谱系细胞会改变其命运并分化为胆碱能无长突细胞。结论:我们的数据揭示了Bhlhb5在整个视网膜发生过程中的广泛表达模式,并证明了Bhlhb5在无长春蛋白和双极性亚型规范中的细胞自主和非细胞自主作用。发展动力学243:279-289,2014。

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