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在果蝇翅膀发育过程中,通过内溶酶体降解和上皮极性进行受体下调需要含Atg6/UVRAG/Vps34的脂质激酶复合物。

Atg6/UVRAG/Vps34-containing lipid kinase complex is required for receptor downregulation through endolysosomal degradation and epithelial polarity during Drosophila wing development.

作者信息

Lőrincz Péter, Lakatos Zsolt, Maruzs Tamás, Szatmári Zsuzsanna, Kis Viktor, Sass Miklós

机构信息

Department of Anatomy, Cell and Developmental Biology, Eotvos Lorand University, Budapest 1117, Hungary.

出版信息

Biomed Res Int. 2014;2014:851349. doi: 10.1155/2014/851349. Epub 2014 May 21.

Abstract

Atg6 (Beclin 1 in mammals) is a core component of the Vps34 PI3K (III) complex, which promotes multiple vesicle trafficking pathways. Atg6 and Vps34 form two distinct PI3K (III) complexes in yeast and mammalian cells, either with Atg14 or with UVRAG. The functions of these two complexes are not entirely clear, as both Atg14 and UVRAG have been suggested to regulate both endocytosis and autophagy. In this study, we performed a microscopic analysis of UVRAG, Atg14, or Atg6 loss-of-function cells in the developing Drosophila wing. Both autophagy and endocytosis are seriously impaired and defective endolysosomes accumulate upon loss of Atg6. We show that Atg6 is required for the downregulation of Notch and Wingless signaling pathways; thus it is essential for normal wing development. Moreover, the loss of Atg6 impairs cell polarity. Atg14 depletion results in autophagy defects with no effect on endocytosis or cell polarity, while the silencing of UVRAG phenocopies all but the autophagy defect of Atg6 depleted cells. Thus, our results indicate that the UVRAG-containing PI3K (III) complex is required for receptor downregulation through endolysosomal degradation and for the establishment of proper cell polarity in the developing wing, while the Atg14-containing complex is involved in autophagosome formation.

摘要

Atg6(在哺乳动物中为Beclin 1)是Vps34 PI3K(III)复合物的核心组成部分,该复合物促进多种囊泡运输途径。在酵母和哺乳动物细胞中,Atg6和Vps34形成两种不同的PI3K(III)复合物,分别与Atg14或UVRAG结合。这两种复合物的功能尚不完全清楚,因为Atg14和UVRAG都被认为可调节内吞作用和自噬。在本研究中,我们对发育中的果蝇翅膀中UVRAG、Atg14或Atg6功能缺失的细胞进行了显微镜分析。Atg6缺失时,自噬和内吞作用均严重受损,且有缺陷的内溶酶体积累。我们发现Atg6是Notch和Wingless信号通路下调所必需的;因此它对正常翅膀发育至关重要。此外,Atg6的缺失会损害细胞极性。Atg14的缺失导致自噬缺陷,但对内吞作用或细胞极性无影响,而UVRAG的沉默除了Atg6缺失细胞的自噬缺陷外,其他表型均与之相似。因此,我们的结果表明,含UVRAG的PI3K(III)复合物通过内溶酶体降解进行受体下调以及在发育中的翅膀中建立适当的细胞极性是必需的,而含Atg14的复合物则参与自噬体的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77cf/4074780/78e0f1d49ad3/BMRI2014-851349.001.jpg

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