Department of Cell and Molecular Physiology, Loyola University Chicago, Maywood, IL 60153, USA.
Department of Molecular Biology and Hamon Center for Regenerative Science and Medicine, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
J Mol Biol. 2019 Nov 8;431(22):4429-4443. doi: 10.1016/j.jmb.2019.07.037. Epub 2019 Aug 23.
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.
最近发现的单跨跨膜蛋白内脂素 (ELN)、矮小开放阅读框 (DWORF)、肌调素 (MLN) 和其他调节素 (ALN) 据报道以类似于已知 SERCA 活性调节剂的方式与 SERCA 钙泵结合,磷蛋白 (PLB) 和肌浆球蛋白 (SLN)。为了确定微肽组装成寡聚体如何影响微肽在调节复合物中与 SERCA 结合的可用性,我们使用共免疫沉淀和荧光共振能量转移 (FRET) 来定量微肽寡聚体形成和 SERCA 结合。微肽与高序化学计量(每个同源寡聚体超过 2 个原聚体)形成高亲和力的同种寡聚体,但所有微肽的单体形式都与 SERCA 相互作用。鉴于这两种替代结合相互作用,我们评估了寡聚化发生以牺牲 SERCA 结合为代价的可能性。然而,即使是最具亲和力的寡聚微肽物种仍然与 SERCA 显示出强烈的 FRET,并且寡聚化亲和力与 SERCA 结合之间存在惊人的正相关。微肽家族成员的这种比较表明,支持寡聚化的相同结构决定因素对于与 SERCA 结合也很重要。此外,DWORF 独特的寡聚化/SERCA 结合谱与其作为 PLB 竞争 SERCA 激活剂的独特作用一致,与其他 SERCA 结合微肽的抑制功能形成对比。