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蓖麻蛋白是一种决定早期生成的中央复合体神经元身份的时序转录因子。

Castor is a temporal transcription factor that specifies early born central complex neuron identity.

作者信息

Dillon Noah R, Doe Chris Q

机构信息

Institute of Neuroscience, Howard Hughes Medical Institute, University of Oregon, Eugene, OR 97403, USA.

出版信息

Development. 2024 Dec 15;151(24). doi: 10.1242/dev.204318. Epub 2024 Dec 16.

Abstract

The generation of neuronal diversity is important for brain function, but how diversity is generated is incompletely understood. We used the development of the Drosophila central complex (CX) to address this question. The CX develops from eight bilateral Type 2 neuroblasts (T2NBs), which generate hundreds of different neuronal types. T2NBs express broad opposing temporal gradients of RNA-binding proteins. It remains unknown whether these protein gradients are sufficient to directly generate all known neuronal diversity, or whether there are temporal transcription factors (TTFs) with narrow expression windows that each specify a small subset of CX neuron identities. Multiple candidate TTFs have been identified, but their function remains uncharacterized. Here, we show that: (1) the adult E-PG neurons are born from early larval T2NBs; (2) the candidate TTF Castor is expressed transiently in early larval T2NBs when E-PG and P-EN neurons are born; and (3) Castor is required to specify early born E-PG and P-EN neuron identities. We conclude that Castor is a TTF in larval T2NB lineages that specifies multiple, early born CX neuron identities.

摘要

神经元多样性的产生对脑功能很重要,但多样性如何产生尚不完全清楚。我们利用果蝇中央复合体(CX)的发育来解决这个问题。CX由八个双侧2型神经母细胞(T2NBs)发育而来,这些神经母细胞产生数百种不同的神经元类型。T2NBs表达RNA结合蛋白的广泛相反的时间梯度。这些蛋白质梯度是否足以直接产生所有已知的神经元多样性,或者是否存在具有狭窄表达窗口的时间转录因子(TTFs),每个因子指定一小部分CX神经元身份,仍然未知。已经鉴定出多个候选TTFs,但其功能仍未明确。在这里,我们表明:(1)成年E-PG神经元起源于幼虫早期的T2NBs;(2)候选TTF Castor在E-PG和P-EN神经元产生时在幼虫早期的T2NBs中短暂表达;(3)Castor是指定早期出生的E-PG和P-EN神经元身份所必需的。我们得出结论,Castor是幼虫T2NB谱系中的一个TTF,它指定了多种早期出生的CX神经元身份。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6a1/11701512/94284c944eec/develop-151-204318-g1.jpg

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