4.6 Article

Ca2+ Regulates ERp57-Calnexin Complex Formation

Journal

MOLECULES
Volume 26, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/molecules26102853

Keywords

endoplasmic reticulum; oxidative folding; chaperone; calnexin; ERp57; human leukocyte antigen; Ca2+

Funding

  1. JSPS KAKENHI [JP19K16092, JP19J00893, JP20K15969]
  2. MEXT [19H04799, 20H04688]
  3. Takeda Science Foundation
  4. Mochida Memorial Foundation for Medical and Pharmaceutical Research
  5. Japan Foundation of Applied Enzymology
  6. Building of Consortia for the Development of Human Resources in Science and Technology
  7. Naito foundation
  8. Japan Agency for Medical Research and Development (AMED) [JP20am0101093]
  9. Promotion of Joint International Research (Fostering Joint International Research (B)) [20KK0156]
  10. KBSI funds [C130000, C180310, C140130]
  11. National Research Foundation of Korea (NRF) [NRF-2019R1A2C1004954]
  12. [19K06520]
  13. [18H03978]
  14. [21H04758]
  15. Grants-in-Aid for Scientific Research [20H04688, 19H04799] Funding Source: KAKEN

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ERp57, a member of the protein disulfide isomerase family, functions as a key disulfide catalyst in the oxidative folding of proteins in the ER. It forms a complex with ER lectin-like chaperones calnexin, and under abnormal physiological conditions such as Ca2+ depletion, this complex effectively guides proper oxidative protein folding by performing both enzymatic and chaperoning functions.
ERp57, a member of the protein disulfide isomerase family, is a ubiquitous disulfide catalyst that functions in the oxidative folding of various clients in the mammalian endoplasmic reticulum (ER). In concert with ER lectin-like chaperones calnexin and calreticulin (CNX/CRT), ERp57 functions in virtually all folding stages from co-translation to post-translation, and thus plays a critical role in maintaining protein homeostasis, with direct implication for pathology. Here, we present mechanisms by which Ca2+ regulates the formation of the ERp57-calnexin complex. Biochemical and isothermal titration calorimetry analyses revealed that ERp57 strongly interacts with CNX via a non-covalent bond in the absence of Ca2+. The ERp57-CNX complex not only promoted the oxidative folding of human leukocyte antigen heavy chains, but also inhibited client aggregation. These results suggest that this complex performs both enzymatic and chaperoning functions under abnormal physiological conditions, such as Ca2+ depletion, to effectively guide proper oxidative protein folding. The findings shed light on the molecular mechanisms underpinning crosstalk between the chaperone network and Ca2+.

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