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神经递质相关基因的异步转录和翻译是果蝇神经元成熟初始阶段的特征。

Asynchronous transcription and translation of neurotransmitter-related genes characterize the initial stages of neuronal maturation in Drosophila.

机构信息

iNOVA4Health, NOVA Medical School, Faculdade de Ciências Médicas, NMS, FCM, Universidade NOVA de Lisboa; Lisboa, Portugal.

Department of Biology, New York University, New York, New York, United States of America.

出版信息

PLoS Biol. 2023 May 19;21(5):e3002115. doi: 10.1371/journal.pbio.3002115. eCollection 2023 May.

Abstract

Neuron specification and maturation are essential for proper central nervous system development. However, the precise mechanisms that govern neuronal maturation, essential to shape and maintain neuronal circuitry, remain poorly understood. Here, we analyse early-born secondary neurons in the Drosophila larval brain, revealing that the early maturation of secondary neurons goes through 3 consecutive phases: (1) Immediately after birth, neurons express pan-neuronal markers but do not transcribe terminal differentiation genes; (2) Transcription of terminal differentiation genes, such as neurotransmitter-related genes VGlut, ChAT, or Gad1, starts shortly after neuron birth, but these transcripts are, however, not translated; (3) Translation of neurotransmitter-related genes only begins several hours later in mid-pupa stages in a coordinated manner with animal developmental stage, albeit in an ecdysone-independent manner. These results support a model where temporal regulation of transcription and translation of neurotransmitter-related genes is an important mechanism to coordinate neuron maturation with brain development.

摘要

神经元的特化和成熟对于中枢神经系统的正常发育至关重要。然而,对于控制神经元成熟的精确机制,即对于塑造和维持神经元回路至关重要的机制,我们仍知之甚少。在这里,我们分析了果蝇幼虫大脑中的早期产生的次级神经元,揭示了次级神经元的早期成熟经历了 3 个连续的阶段:(1)出生后立即,神经元表达全神经元标志物,但不转录终端分化基因;(2)神经递质相关基因 VGlut、ChAT 或 Gad1 的转录在神经元出生后不久开始,但这些转录物不会被翻译;(3)只有在几小时后,在中蛹阶段,与动物发育阶段协调一致,尽管以蜕皮激素非依赖性的方式,神经递质相关基因才开始翻译。这些结果支持了这样一种模型,即神经递质相关基因的转录和翻译的时间调节是协调神经元成熟与大脑发育的重要机制。

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