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      The composition of a protein aggregate modulates the specificity and efficiency of its autophagic degradation

      brief-report

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          ABSTRACT

          The mechanism underlying autophagic degradation of a protein aggregate remains largely unknown. A family of receptor proteins that simultaneously bind to the cargo and the Atg8 family of autophagy proteins (such as the MAP1LC3/LC3 subfamily) has been shown to confer cargo selectivity. The selectivity and efficiency of protein aggregate removal is also modulated by scaffold proteins that interact with receptor proteins and ATG proteins. During C. elegans embryogenesis, autophagic clearance of the cargoes PGL-1 and PGL-3 requires the receptor protein SEPA-1 and the scaffold protein EPG-2. SEPA-1 and EPG-2 also form aggregates that are degraded by autophagy. Here we investigated the effect of composition and organization of PGL granules on their autophagic degradation. We found that depletion of PGL-1 or PGL-3 facilitates the degradation of SEPA-1 and EPG-2. Removal of EPG-2 is also promoted when SEPA-1 is absent. Depletion of PGL-1 or PGL-3 renders the degradation of SEPA-1 independent of EPG-2. We further showed that overexpression of SEPA-1 or EPG-2 as well as SQST-1 or EPG-7 (scaffold protein), which belong to different classes of aggregate, has no evident effect on the degradation of the other type. Our results indicate that the composition and organization of protein aggregates provide another layer of regulation to modulate degradation efficiency.

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          Author and article information

          Journal
          Autophagy
          Autophagy
          KAUP
          kaup20
          Autophagy
          Taylor & Francis
          1554-8627
          1554-8635
          2017
          14 August 2017
          : 13
          : 9
          : 1487-1495
          Affiliations
          [a ] National Laboratory of Biomacromolecules, CAS Center for Excellence in Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences , Beijing, China
          [b ] College of Life Sciences, University of Chinese Academy of Sciences , Beijing, China
          Author notes
          CONTACT Hong Zhang hongzhang@ 123456sun5.ibp.ac.cn State Key Laboratory of Biomacromolecules, Institute of Biophysics, Chinese Academy of Sciences , 15 Datun Road, Chaoyang District, Beijing, P.R. China, 100101
          [*]

          These authors contributed equally to this study

          Supplemental data for this article can be accessed on the publisher's website.

          Article
          PMC5612515 PMC5612515 5612515 1339843
          10.1080/15548627.2017.1339843
          5612515
          28806108
          e44c1d51-cc34-44b0-ab8f-6252d10d882b
          © 2017 Taylor & Francis
          History
          : 8 August 2016
          : 21 May 2017
          : 2 June 2017
          Page count
          Figures: 4, Tables: 0, Equations: 0, References: 25, Pages: 9
          Categories
          Basic Brief Report

          PGL granules,aggrephagy, C. elegans ,receptor protein,scaffold protein

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