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在果蝇神经元中,微管独立于中心体组织。

Microtubules are organized independently of the centrosome in Drosophila neurons.

机构信息

Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Neural Dev. 2011 Dec 6;6:38. doi: 10.1186/1749-8104-6-38.

Abstract

BACKGROUND

The best-studied arrangement of microtubules is that organized by the centrosome, a cloud of microtubule nucleating and anchoring proteins is clustered around centrioles. However, noncentrosomal microtubule arrays are common in many differentiated cells, including neurons. Although microtubules are not anchored at neuronal centrosomes, it remains unclear whether the centrosome plays a role in organizing neuronal microtubules. We use Drosophila as a model system to determine whether centrosomal microtubule nucleation is important in mature neurons.

RESULTS

In developing and mature neurons, centrioles were not surrounded by the core nucleation protein γ-tubulin. This suggests that the centrioles do not organize functional centrosomes in Drosophila neurons in vivo. Consistent with this idea, centriole position was not correlated with a specific region of the cell body in neurons, and growing microtubules did not cluster around the centriole, even after axon severing when the number of growing plus ends is dramatically increased. To determine whether the centrosome was required for microtubule organization in mature neurons, we used two approaches. First, we used DSas-4 centriole duplication mutants. In these mutants, centrioles were present in many larval sensory neurons, but they were not fully functional. Despite reduced centriole function, microtubule orientation was normal in axons and dendrites. Second, we used laser ablation to eliminate the centriole, and again found that microtubule polarity in axons and dendrites was normal, even 3 days after treatment.

CONCLUSION

We conclude that the centrosome is not a major site of microtubule nucleation in Drosophila neurons, and is not required for maintenance of neuronal microtubule organization in these cells.

摘要

背景

研究最充分的微管排列方式是由中心体组织的,中心体是一个围绕着中心粒的微管起始和锚定蛋白云。然而,非中心体的微管阵列在许多分化细胞中很常见,包括神经元。尽管神经元中的微管没有锚定在中心体上,但中心体是否在组织神经元微管中发挥作用仍不清楚。我们使用果蝇作为模型系统来确定中心体微管起始是否对成熟神经元重要。

结果

在发育中的和成熟的神经元中,中心粒周围没有核心起始蛋白γ-微管蛋白。这表明在体内,中心粒在果蝇神经元中没有组织功能中心体。这一观点与以下事实一致:中心粒的位置与神经元胞体的特定区域无关,并且即使在切断轴突后,当生长的正端数量显著增加时,生长的微管也不会聚集在中心粒周围。为了确定中心体是否需要成熟神经元中的微管组织,我们采用了两种方法。首先,我们使用了 DSas-4 中心粒复制突变体。在这些突变体中,许多幼虫感觉神经元中存在中心粒,但它们没有完全发挥功能。尽管中心粒功能降低,但轴突和树突中的微管取向正常。其次,我们使用激光消融消除了中心粒,再次发现轴突和树突中的微管极性正常,即使在处理 3 天后也是如此。

结论

我们得出结论,中心体不是果蝇神经元中微管起始的主要部位,并且对于维持这些细胞中的神经元微管组织不是必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1990/3271965/d441aada1cdf/1749-8104-6-38-1.jpg

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