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Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival

Clear cell renal cell carcinoma (ccRCC) is composed of cells whose cytoplasm filled with lipid droplets, subcellular organelles coated with adipocyte differentiation-related protein (ADFP) for the storage of triacylglycerol converted from excess free fatty acids. Mammalian cells primarily use the au...

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Autores principales: Xu, Guibin, Jiang, Yaodong, Xiao, Yuansong, Liu, Xian-De, Yue, Fei, Li, Wenjiao, Li, Xun, He, Yongzhong, Jiang, Xianhan, Huang, Hai, Chen, Qi, Jonasch, Eric, Liu, Leyuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4868754/
https://www.ncbi.nlm.nih.gov/pubmed/26701856
http://dx.doi.org/10.18632/oncotarget.6669
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author Xu, Guibin
Jiang, Yaodong
Xiao, Yuansong
Liu, Xian-De
Yue, Fei
Li, Wenjiao
Li, Xun
He, Yongzhong
Jiang, Xianhan
Huang, Hai
Chen, Qi
Jonasch, Eric
Liu, Leyuan
author_facet Xu, Guibin
Jiang, Yaodong
Xiao, Yuansong
Liu, Xian-De
Yue, Fei
Li, Wenjiao
Li, Xun
He, Yongzhong
Jiang, Xianhan
Huang, Hai
Chen, Qi
Jonasch, Eric
Liu, Leyuan
author_sort Xu, Guibin
collection PubMed
description Clear cell renal cell carcinoma (ccRCC) is composed of cells whose cytoplasm filled with lipid droplets, subcellular organelles coated with adipocyte differentiation-related protein (ADFP) for the storage of triacylglycerol converted from excess free fatty acids. Mammalian cells primarily use the autophagy-lysosome system to degrade misfolded/aggregated proteins and dysfunctional organelles such as lipid droplets. MAP1S (originally named C19ORF5) is an autophagy activator and promotes the biogenesis and degradation of autophagosomes. Previously, we reported that MAP1S suppresses hepatocellular carcinogenesis in a mouse model and promoted the survival of patients with prostate adenocarcinomas by increasing the degradation of aggregated proteins and dysfunctional mitochondria. Here we show that a suppression of MAP1S in renal cells causes an impairment of autophagic clearance of lipid droplets. In contrast, an overexpression of MAP1S causes an activation of autophagy flux and a reduction of lipid droplets so less DNA double strand breakage is induced. The levels of MAP1S in normal renal cells are dramatically higher than those in the ccRCC tissues and cell lines derived from renal cell carcinomas. High levels of MAP1S are associated with a reduced malignancy and metastasis of ccRCC and predict a better survival of ccRCC patients. Therefore, autophagy defects in the degradation of lipid droplets triggered by the MAP1S deficiency may enhance the initiation and development of ccRCC and reduce the survival of ccRCC patients.
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spelling pubmed-48687542016-05-20 Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival Xu, Guibin Jiang, Yaodong Xiao, Yuansong Liu, Xian-De Yue, Fei Li, Wenjiao Li, Xun He, Yongzhong Jiang, Xianhan Huang, Hai Chen, Qi Jonasch, Eric Liu, Leyuan Oncotarget Research Paper Clear cell renal cell carcinoma (ccRCC) is composed of cells whose cytoplasm filled with lipid droplets, subcellular organelles coated with adipocyte differentiation-related protein (ADFP) for the storage of triacylglycerol converted from excess free fatty acids. Mammalian cells primarily use the autophagy-lysosome system to degrade misfolded/aggregated proteins and dysfunctional organelles such as lipid droplets. MAP1S (originally named C19ORF5) is an autophagy activator and promotes the biogenesis and degradation of autophagosomes. Previously, we reported that MAP1S suppresses hepatocellular carcinogenesis in a mouse model and promoted the survival of patients with prostate adenocarcinomas by increasing the degradation of aggregated proteins and dysfunctional mitochondria. Here we show that a suppression of MAP1S in renal cells causes an impairment of autophagic clearance of lipid droplets. In contrast, an overexpression of MAP1S causes an activation of autophagy flux and a reduction of lipid droplets so less DNA double strand breakage is induced. The levels of MAP1S in normal renal cells are dramatically higher than those in the ccRCC tissues and cell lines derived from renal cell carcinomas. High levels of MAP1S are associated with a reduced malignancy and metastasis of ccRCC and predict a better survival of ccRCC patients. Therefore, autophagy defects in the degradation of lipid droplets triggered by the MAP1S deficiency may enhance the initiation and development of ccRCC and reduce the survival of ccRCC patients. Impact Journals LLC 2015-12-18 /pmc/articles/PMC4868754/ /pubmed/26701856 http://dx.doi.org/10.18632/oncotarget.6669 Text en Copyright: © 2016 Xu et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Xu, Guibin
Jiang, Yaodong
Xiao, Yuansong
Liu, Xian-De
Yue, Fei
Li, Wenjiao
Li, Xun
He, Yongzhong
Jiang, Xianhan
Huang, Hai
Chen, Qi
Jonasch, Eric
Liu, Leyuan
Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival
title Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival
title_full Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival
title_fullStr Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival
title_full_unstemmed Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival
title_short Fast clearance of lipid droplets through MAP1S-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival
title_sort fast clearance of lipid droplets through map1s-activated autophagy suppresses clear cell renal cell carcinomas and promotes patient survival
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4868754/
https://www.ncbi.nlm.nih.gov/pubmed/26701856
http://dx.doi.org/10.18632/oncotarget.6669
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