Literature DB >> 19185711

The quantitative Pho8Delta60 assay of nonspecific autophagy.

Takeshi Noda1, Daniel J Klionsky.   

Abstract

The measurement of autophagic flux is critical in understanding the regulation of autophagy. The Pho8Delta60 assay employs a very sensitive enzymatic assay that provides a high signal-to-noise ratio and allows for precise quantification of autophagic flow in yeast. Pho8, alkaline phosphatase, is a resident vacuolar enzyme that is delivered to the vacuole membrane through a portion of the secretory pathway. The assay utilizes a genetically engineered version of Pho8 that lacks the N-terminal transmembrane domain that allows for translocation into the endoplasmic reticulum. Accordingly, Pho8Delta60 remains in the cytosol and is delivered to the vacuole only through autophagy. Once in the vacuole lumen, the C-terminal propeptide is proteolytically removed, which results in activation. Thus, the alkaline phosphatase activity reflects the amount of the cytosol delivered to the vacuole through nonspecific autophagy.

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Year:  2008        PMID: 19185711     DOI: 10.1016/S0076-6879(08)03203-5

Source DB:  PubMed          Journal:  Methods Enzymol        ISSN: 0076-6879            Impact factor:   1.600


  85 in total

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2.  Autophosphorylation within the Atg1 activation loop is required for both kinase activity and the induction of autophagy in Saccharomyces cerevisiae.

Authors:  Yuh-Ying Yeh; Kristie Wrasman; Paul K Herman
Journal:  Genetics       Date:  2010-05-03       Impact factor: 4.562

3.  A large-scale analysis of autophagy-related gene expression identifies new regulators of autophagy.

Authors:  Amélie Bernard; Meiyan Jin; Ziheng Xu; Daniel J Klionsky
Journal:  Autophagy       Date:  2015-11-02       Impact factor: 16.016

4.  Proteolytic processing of Atg32 by the mitochondrial i-AAA protease Yme1 regulates mitophagy.

Authors:  Ke Wang; Meiyan Jin; Xu Liu; Daniel J Klionsky
Journal:  Autophagy       Date:  2013-09-06       Impact factor: 16.016

5.  Rph1/KDM4 mediates nutrient-limitation signaling that leads to the transcriptional induction of autophagy.

Authors:  Amélie Bernard; Meiyan Jin; Patricia González-Rodríguez; Jens Füllgrabe; Elizabeth Delorme-Axford; Steven K Backues; Bertrand Joseph; Daniel J Klionsky
Journal:  Curr Biol       Date:  2015-02-05       Impact factor: 10.834

Review 6.  Historical landmarks of autophagy research.

Authors:  Yoshinori Ohsumi
Journal:  Cell Res       Date:  2013-12-24       Impact factor: 25.617

7.  The identification and analysis of phosphorylation sites on the Atg1 protein kinase.

Authors:  Yuh-Ying Yeh; Khyati H Shah; Chi-Chi Chou; He-Hsuan Hsiao; Kristie M Wrasman; Joseph S Stephan; Demetra Stamatakos; Kay-Hooi Khoo; Paul K Herman
Journal:  Autophagy       Date:  2011-07-01       Impact factor: 16.016

8.  Glucose starvation inhibits autophagy via vacuolar hydrolysis and induces plasma membrane internalization by down-regulating recycling.

Authors:  Michael J Lang; Jorge Y Martinez-Marquez; Derek C Prosser; Laura R Ganser; Destiney Buelto; Beverly Wendland; Mara C Duncan
Journal:  J Biol Chem       Date:  2014-04-21       Impact factor: 5.157

Review 9.  Regulation of NAD+ metabolism, signaling and compartmentalization in the yeast Saccharomyces cerevisiae.

Authors:  Michiko Kato; Su-Ju Lin
Journal:  DNA Repair (Amst)       Date:  2014-08-02

10.  Latrepirdine (dimebon) enhances autophagy and reduces intracellular GFP-Aβ42 levels in yeast.

Authors:  Prashant R Bharadwaj; Giuseppe Verdile; Renae K Barr; Veer Gupta; John W Steele; M Lenard Lachenmayer; Zhenyu Yue; Michelle E Ehrlich; Gregory Petsko; Shulin Ju; Dagmar Ringe; Sonia E Sankovich; Joanne M Caine; Ian G Macreadie; Sam Gandy; Ralph N Martins
Journal:  J Alzheimers Dis       Date:  2012       Impact factor: 4.472

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