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Autophagy and modular restructuring of metabolism control germline tumor differentiation and proliferation in C. elegans

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Figshare2016-04-06 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Autophagy_and_modular_restructuring_of_metabolism_control_germline_tumor_differentiation_and_proliferation_in_i_C_elegans_i_/1632845
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Autophagy can act either as a tumor suppressor or as a survival mechanism for established tumors. To understand how autophagy plays this dual role in cancer, in vivo models are required. By using a highly heterogeneous C. elegans germline tumor, we show that autophagy-related proteins are expressed in a specific subset of tumor cells, neurons. Inhibition of autophagy impairs neuronal differentiation and increases tumor cell number, resulting in a shorter life span of animals with tumors, while induction of autophagy extends their life span by impairing tumor proliferation. Fasting of animals with fully developed tumors leads to a doubling of their life span, which depends on modular changes in transcription including switches in transcription factor networks and mitochondrial metabolism. Hence, our results suggest that metabolic restructuring, cell-type specific regulation of autophagy and neuronal differentiation constitute central pathways preventing growth of heterogeneous tumors.
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2016-04-06
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