Rab5 is necessary for the biogenesis of the endolysosomal system in vivo

被引:0
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作者
Anja Zeigerer
Jerome Gilleron
Roman L. Bogorad
Giovanni Marsico
Hidenori Nonaka
Sarah Seifert
Hila Epstein-Barash
Satya Kuchimanchi
Chang Geng Peng
Vera M. Ruda
Perla Del Conte-Zerial
Jan G. Hengstler
Yannis Kalaidzidis
Victor Koteliansky
Marino Zerial
机构
[1] Max Planck Institute of Molecular Cell Biology and Genetics,
[2] 01307 Dresden,undefined
[3] Germany ,undefined
[4] Koch Institute for Integrative Cancer Research,undefined
[5] Massachusetts Institute of Technology,undefined
[6] Alnylam Pharmaceuticals,undefined
[7] Inc.,undefined
[8] Cardiovascular Research Center and Center for Human Genetic Research,undefined
[9] Massachusetts General Hospital and Harvard Medical School,undefined
[10] Leibniz Research Centre for Working Environment and Human Factors (IfADo),undefined
[11] 44139 Dortmund,undefined
[12] Germany ,undefined
[13] Belozersky Institute of Physico-Chemical Biology,undefined
[14] Moscow State University,undefined
[15] 119899,undefined
[16] Moscow,undefined
[17] Russia ,undefined
来源
Nature | 2012年 / 485卷
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摘要
An outstanding question is how cells control the number and size of membrane organelles. The small GTPase Rab5 has been proposed to be a master regulator of endosome biogenesis. Here, to test this hypothesis, we developed a mathematical model of endosome dependency on Rab5 and validated it by titrating down all three Rab5 isoforms in adult mouse liver using state-of-the-art RNA interference technology. Unexpectedly, the endocytic system was resilient to depletion of Rab5 and collapsed only when Rab5 decreased to a critical level. Loss of Rab5 below this threshold caused a marked reduction in the number of early endosomes, late endosomes and lysosomes, associated with a block of low-density lipoprotein endocytosis. Loss of endosomes caused failure to deliver apical proteins to the bile canaliculi, suggesting a requirement for polarized cargo sorting. Our results demonstrate for the first time, to our knowledge, the role of Rab5 as an endosome organizer in vivo and reveal the resilience mechanisms of the endocytic system.
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页码:465 / 470
页数:5
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