Regulation and Quality Control of Adiponectin Assembly by Endoplasmic Reticulum Chaperone ERp44

Adiponectin, a collagenous hormone secreted abundantly from adipocytes, possesses potent antidiabetic and anti-inflammatory properties. Mediated by the conserved Cys39 located in the variable region of the N terminus, the trimeric (low molecular weight (LMW)) adiponectin subunit assembles into diffe...

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Veröffentlicht in:The Journal of biological chemistry 2015-07, Vol.290 (29), p.18111-18123
Hauptverfasser: Hampe, Lutz, Radjainia, Mazdak, Xu, Cheng, Harris, Paul W.R., Bashiri, Ghader, Goldstone, David C., Brimble, Margaret A., Wang, Yu, Mitra, Alok K.
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Sprache:eng
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Zusammenfassung:Adiponectin, a collagenous hormone secreted abundantly from adipocytes, possesses potent antidiabetic and anti-inflammatory properties. Mediated by the conserved Cys39 located in the variable region of the N terminus, the trimeric (low molecular weight (LMW)) adiponectin subunit assembles into different higher order complexes, e.g. hexamers (middle molecular weight (MMW)) and 12–18-mers (high molecular weight (HMW)), the latter being mostly responsible for the insulin-sensitizing activity of adiponectin. The endoplasmic reticulum (ER) chaperone ERp44 retains adiponectin in the early secretory compartment and tightly controls the oxidative state of Cys39 and the oligomerization of adiponectin. Using cellular and in vitro assays, we show that ERp44 specifically recognizes the LMW and MMW forms but not the HMW form. Our binding assays with short peptide mimetics of adiponectin suggest that ERp44 intercepts and converts the pool of fully oxidized LMW and MMW adiponectin, but not the HMW form, into reduced trimeric precursors. These ERp44-bound precursors in the cis-Golgi may be transported back to the ER and released to enhance the population of adiponectin intermediates with appropriate oxidative state for HMW assembly, thereby underpinning the process of ERp44 quality control. ERp44 tightly controls adiponectin assembly in the early secretory compartment. ERp44 exclusively recognizes and converts assembly-trapped adiponectin intermediates back to precursors of the biologically potent high molecular weight form. ERp44 enhances the population of adiponectin intermediates with appropriate oxidative state for HMW assembly. Our findings provide a mechanism for the regulation of adiponectin assembly and shed light on ERp44 function.
ISSN:0021-9258
1083-351X
DOI:10.1074/jbc.M115.663088