4.7 Article

Newly Discovered Micropeptide Regulators of SERCA Form Oligomers but Bind to the Pump as Monomers

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 431, 期 22, 页码 4429-4443

出版社

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmb.2019.07.037

关键词

Protein-protein interactions; Oligomerization; Calcium signaling; ion transport; fluorescence resonance energy transfer

资金

  1. Loyola University Chicago Health Sciences Division Cardiovascular Research Institute
  2. Fondation Leducq Networks of Excellence
  3. Robert A Welch Foundation [1-0025]
  4. NIH Pathway to Independence Award [K99HL141630]
  5. [HL-092321]
  6. [HL-143816]
  7. [HL -130253]
  8. [HD-087351]
  9. [HL-138426]
  10. [AR -067294]

向作者/读者索取更多资源

The recently-discovered single-span transmembrane proteins endoregulin (ELN), dwarf open reading frame (DWORF), myoregulin (MLN), and another-regulin (ALN) are reported to bind to the SERCA calcium pump in a manner similar to that of known regulators of SERCA activity, phospholamban (PLB) and sarcolipin (SLN). To determine how micropeptide assembly into oligomers affects the availability of the micropeptide to bind to SERCA in a regulatory complex, we used co-immunoprecipitation and fluorescence resonance energy transfer (FRET) to quantify micropeptide oligomerization and SERCA-binding. Micropeptides formed avid homo-oligomers with high-order stoichiometry (n > 2 protomers per homo-oligomer), but it was the monomeric form of all micropeptides that interacted with SERCA. In view of these two alternative binding interactions, we evaluated the possibility that oligomerization occurs at the expense of SERCA-binding. However, even the most avidly oligomeric micropeptide species still showed robust FRET with SERCA, and there was a surprising positive correlation between oligomerization affinity and SERCA-binding. This comparison of micropeptide family members suggests that the same structural determinants that support oligomerization are also important for binding to SERCA. Moreover, the unique oligomerization/SERCA-binding profile of DWORF is in harmony with its distinct role as a PLB-competing SERCA activator, in contrast to the inhibitory function of the other SERCA-binding micropeptides. (C) 2019 Elsevier Ltd. All rights reserved.

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