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一个用于带有HA标签蛋白的果蝇工具包揭示了末龄幼虫脂肪体中自噬通量的阻滞。

A Drosophila toolkit for HA-tagged proteins unveils a block in autophagy flux in the last instar larval fat body.

作者信息

Murakawa Tadayoshi, Nakamura Tsuyoshi, Kawaguchi Kohei, Murayama Futoshi, Zhao Ning, Stasevich Timothy J, Kimura Hiroshi, Fujita Naonobu

机构信息

Cell Biology Center, Institute of Innovative Research, Tokyo Institute of Technology, 4259-S2-11 Nagatsuta-cho, Midori-ku, Yokohama 226-8503, Japan.

Graduate School of Life Science and Technology, Tokyo Institute of Technology, Yokohama 226-8503, Japan.

出版信息

Development. 2022 Mar 15;149(6). doi: 10.1242/dev.200243. Epub 2022 Mar 23.

Abstract

For in vivo functional analysis of a protein of interest (POI), multiple transgenic strains with a POI that harbors different tags are needed but generation of these strains is still labor-intensive work. To overcome this, we have developed a versatile Drosophila toolkit with a genetically encoded single-chain variable fragment for the HA epitope tag: 'HA Frankenbody'. This system allows various analyses of HA-tagged POI in live tissues by simply crossing an HA Frankenbody fly with an HA-tagged POI fly. Strikingly, the GFP-mCherry tandem fluorescent-tagged HA Frankenbody revealed a block in autophagic flux and an accumulation of enlarged autolysosomes in the last instar larval and prepupal fat body. Mechanistically, lysosomal activity was downregulated at this stage, and endocytosis, but not autophagy, was indispensable for the swelling of lysosomes. Furthermore, forced activation of lysosomes by fat body-targeted overexpression of Mitf, the single MiTF/TFE family gene in Drosophila, suppressed the lysosomal swelling and resulted in pupal lethality. Collectively, we propose that downregulated lysosomal function in the fat body plays a role in the metamorphosis of Drosophila.

摘要

对于感兴趣的蛋白质(POI)的体内功能分析,需要多个带有不同标签的POI转基因品系,但这些品系的生成仍然是一项劳动密集型工作。为了克服这一问题,我们开发了一种通用的果蝇工具包,其中带有用于HA表位标签的基因编码单链可变片段:“HA Frankenbody”。该系统通过简单地将HA Frankenbody果蝇与HA标签的POI果蝇杂交,就可以在活组织中对HA标签的POI进行各种分析。引人注目的是,GFP-mCherry串联荧光标记的HA Frankenbody在末龄幼虫和蛹前期脂肪体中显示出自噬通量受阻以及扩大的自噬溶酶体积累。从机制上讲,在此阶段溶酶体活性下调,并且内吞作用而非自噬对于溶酶体肿胀是必不可少的。此外,通过果蝇中单一的MiTF/TFE家族基因Mitf在脂肪体中的靶向过表达来强制激活溶酶体,可抑制溶酶体肿胀并导致蛹期致死。总体而言,我们认为脂肪体中溶酶体功能的下调在果蝇变态中起作用。

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