Literature DB >> 19357194

Autophagic elimination of misfolded procollagen aggregates in the endoplasmic reticulum as a means of cell protection.

Yoshihito Ishida1, Akitsugu Yamamoto, Akira Kitamura, Shireen R Lamandé, Tamotsu Yoshimori, John F Bateman, Hiroshi Kubota, Kazuhiro Nagata.   

Abstract

Type I collagen is a major component of the extracellular matrix, and mutations in the collagen gene cause several matrix-associated diseases. These mutant procollagens are misfolded and often aggregated in the endoplasmic reticulum (ER). Although the misfolded procollagens are potentially toxic to the cell, little is known about how they are eliminated from the ER. Here, we show that procollagen that can initially trimerize but then aggregates in the ER are eliminated by an autophagy-lysosome pathway, but not by the ER-associated degradation (ERAD) pathway. Inhibition of autophagy by specific inhibitors or RNAi-mediated knockdown of an autophagy-related gene significantly stimulated accumulation of aggregated procollagen trimers in the ER, and activation of autophagy with rapamycin resulted in reduced amount of aggregates. In contrast, a mutant procollagen which has a compromised ability to form trimers was degraded by ERAD. Moreover, we found that autophagy plays an essential role in protecting cells against the toxicity of the ERAD-inefficient procollagen aggregates. The autophagic elimination of aggregated procollagen occurs independently of the ERAD system. These results indicate that autophagy is a final cell protection strategy deployed against ER-accumulated cytotoxic aggregates that are not able to be removed by ERAD.

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Year:  2009        PMID: 19357194      PMCID: PMC2688553          DOI: 10.1091/mbc.e08-11-1092

Source DB:  PubMed          Journal:  Mol Biol Cell        ISSN: 1059-1524            Impact factor:   4.138


  51 in total

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Journal:  Autophagy       Date:  2007-11-21       Impact factor: 16.016

Review 9.  Lysosomes: fusion and function.

Authors:  J Paul Luzio; Paul R Pryor; Nicholas A Bright
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  99 in total

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Journal:  Physiol Rev       Date:  2012-04       Impact factor: 37.312

Review 4.  Chaperoning osteogenesis: new protein-folding disease paradigms.

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5.  Pulse-chase analysis of procollagen biosynthesis by azidohomoalanine labeling.

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Review 6.  Bone biology: insights from osteogenesis imperfecta and related rare fragility syndromes.

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7.  Hypertonic stress promotes autophagy and microtubule-dependent autophagosomal clusters.

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Review 8.  Osteogenesis imperfecta and therapeutics.

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