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海藻糖酶调节果蝇视叶中的神经上皮干细胞维持和分化。

Trehalase regulates neuroepithelial stem cell maintenance and differentiation in the Drosophila optic lobe.

作者信息

Chen Xi, Quan Yaru, Wang Hongbin, Luo Hong

机构信息

School of Life Sciences, Tsinghua University, Beijing, China.

School of Life Sciences, Tsinghua University, Beijing, China; Institute for Biological Product Control, National Institutes for Food and Drug Control, Beijing, China.

出版信息

PLoS One. 2014 Jul 8;9(7):e101433. doi: 10.1371/journal.pone.0101433. eCollection 2014.

Abstract

As one of the major hydrolases in Drosophila, trehalase (Treh) catalyzes the hydrolysis of trehalose into glucose providing energy for flight muscle activity. Treh is highly conserved from bacteria to humans, but little is known about its function during animal development. Here, we analyze the function of Treh in Drosophila optic lobe development. In the optic lobe, neuroepithelial cells (NEs) first divide symmetrically to expand the stem cell pool and then differentiate into neuroblasts, which divide asymmetrically to generate medulla neurons. We find that the knockdown of Treh leads to a loss of the lamina and a smaller medulla. Analyses of Treh RNAi-expressing clones and loss-of-function mutants indicate that the lamina and medulla phenotypes result from neuroepithelial disintegration and premature differentiation into medulla neuroblasts. Although the principal role of Treh is to generate glucose, the Treh loss-of-function phenotype cannot be rescued by exogenous glucose. Thus, our results indicate that in addition to being a hydrolase, Treh plays a role in neuroepithelial stem cell maintenance and differentiation during Drosophila optic lobe development.

摘要

作为果蝇体内主要的水解酶之一,海藻糖酶(Treh)催化海藻糖水解为葡萄糖,为飞行肌活动提供能量。Treh从细菌到人类都高度保守,但人们对其在动物发育过程中的功能了解甚少。在此,我们分析了Treh在果蝇视叶发育中的功能。在视叶中,神经上皮细胞(NEs)首先进行对称分裂以扩大干细胞池,然后分化为神经母细胞,神经母细胞进行不对称分裂以产生髓质神经元。我们发现,敲低Treh会导致神经层缺失和髓质变小。对表达Treh RNAi的克隆和功能缺失突变体的分析表明,神经层和髓质表型是由神经上皮解体和过早分化为髓质神经母细胞所致。尽管Treh的主要作用是生成葡萄糖,但外源性葡萄糖无法挽救Treh功能缺失的表型。因此,我们的结果表明,除了作为一种水解酶外,Treh在果蝇视叶发育过程中还在神经上皮干细胞的维持和分化中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28a1/4086926/77816e906adf/pone.0101433.g001.jpg

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