4.6 Article

A Golgi-localized Mannosidase ( MAN1B1) Plays a Nonenzymatic Gatekeeper Role in Protein Biosynthetic Quality Control

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 289, 期 17, 页码 11844-11858

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M114.552091

关键词

Carbohydrate Glycoprotein; ER Quality Control; ER-associated Degradation; ERAD; Glycoprotein Secretion; Glycosidases; Protein Degradation; Protein Evolution; Protein Misfolding; Protein Sorting

资金

  1. National Institutes of Health [RO1 DK064232]
  2. Alpha1-Foundation
  3. Huffington Center on Aging Biology of Aging Training Grant [T32AG000183-19]

向作者/读者索取更多资源

Background: The capacity of Golgi-localized MAN1B1 to promote ERAD was investigated. Results: The MAN1B1 catalytic domain is dispensable for ERAD, which helped identify an important conserved, non-enzymatic decapeptide sequence within the luminal stem. Conclusion: The tempo-spatial expansion of quality control in the secretory pathway includes evolutionary gain-of-function for MAN1B1. Significance: Evolutionary distinctions can exist in how quality control systems operate. Conformation-based disorders are manifested at the level of protein structure, necessitating an accurate understanding of how misfolded proteins are processed by the cellular proteostasis network. Asparagine-linked glycosylation plays important roles for protein quality control within the secretory pathway. The suspected role for the MAN1B1 gene product MAN1B1, also known as ER mannosidase I, is to function within the ER similar to the yeast ortholog Mns1p, which removes a terminal mannose unit to initiate a glycan-based ER-associated degradation (ERAD) signal. However, we recently discovered that MAN1B1 localizes to the Golgi complex in human cells and uncovered its participation in ERAD substrate retention, retrieval to the ER, and subsequent degradation from this organelle. The objective of the current study was to further characterize the contribution of MAN1B1 as part of a Golgi-based quality control network. Multiple lines of experimental evidence support a model in which neither the mannosidase activity nor catalytic domain is essential for the retention or degradation of the misfolded ERAD substrate Null Hong Kong. Instead, a highly conserved, vertebrate-specific non-enzymatic decapeptide sequence in the luminal stem domain plays a significant role in controlling the fate of overexpressed Null Hong Kong. Together, these findings define a new functional paradigm in which Golgi-localized MAN1B1 can play a mannosidase-independent gatekeeper role in the proteostasis network of higher eukaryotes.

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