首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Sarcolipin Protein Interaction with Sarco(endo)plasmic Reticulum Ca2+ATPase (SERCA) Is Distinct from Phospholamban Protein and Only Sarcolipin Can Promote Uncoupling of the SERCA Pump
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Sarcolipin Protein Interaction with Sarco(endo)plasmic Reticulum Ca2+ATPase (SERCA) Is Distinct from Phospholamban Protein and Only Sarcolipin Can Promote Uncoupling of the SERCA Pump

机译:Sarcolipin蛋白与Sarco(endo)质网Ca2 + ATPase(SERCA)的相互作用不同于磷脂酰肌醇蛋白只有Sarcolipin可以促进SERCA泵的解偶联

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摘要

Sarco(endo)plasmic reticulum Ca2+ATPase (SERCA) pump activity is modulated by phospholamban (PLB) and sarcolipin (SLN) in cardiac and skeletal muscle. Recent data suggest that SLN could play a role in muscle thermogenesis by promoting uncoupling of the SERCA pump (Lee, A.G. (2002) Curr. Opin. Struct. Biol. 12, 547–554 and Bal, N. C., Maurya, S. K., Sopariwala, D. H., Sahoo, S. K., Gupta, S. C., Shaikh, S. A., Pant, M., Rowland, L. A., Bombardier, E., Goonasekera, S. A., Tupling, A. R., Molkentin, J. D., and Periasamy, M. (2012) Nat. Med. 18, 1575–1579), but the mechanistic details are unknown. To better define how binding of SLN to SERCA promotes uncoupling of SERCA, we compared SLN and SERCA1 interaction with that of PLB in detail. The homo-bifunctional cross-linker (1,6-bismaleimidohexane) was employed to detect dynamic protein interaction during the SERCA cycle. Our studies reveal that SLN differs significantly from PLB: 1) SLN primarily affects the Vmax of SERCA-mediated Ca2+ uptake but not the pump affinity for Ca2+; 2) SLN can bind to SERCA in the presence of high Ca2+, but PLB can only interact to the ATP-bound Ca2+-free E2 state; and 3) unlike PLB, SLN interacts with SERCA throughout the kinetic cycle and promotes uncoupling of the SERCA pump. Using SERCA transmembrane mutants, we additionally show that PLB and SLN can bind to the same groove but interact with a different set of residues on SERCA. These data collectively suggest that SLN is functionally distinct from PLB; its ability to interact with SERCA in the presence of Ca2+ causes uncoupling of the SERCA pump and increased heat production.
机译:心肌和骨骼肌中的磷酸lamban(PLB)和肌钙蛋白(SLN)调节了肌膜内质网Ca 2 + ATPase(SERCA)的泵浦活性。最近的数据表明,SLN可能通过促进SERCA泵的解偶联而在肌肉生热中发挥作用(Lee,AG(2002)Curr。Opin。Struct。Biol。12,547-554 and Bal,NC,Maurya,SK,Sopariwala, DH,Sahoo,SK,Gupta,SC,Shaikh,SA,Pant,M.,Rowland,LA,Bombardier,E.,Goonasekera,SA,Tupling,AR,Molkentin,JD,and Periasamy,M.(2012)Nat。 Med。18,1575–1579),但机制细节未知。为了更好地定义SLN与SERCA的结合如何促进SERCA的解偶联,我们详细比较了SLN和SERCA1与PLB的相互作用。均双功能交联剂(1,6-双马来酰亚胺基己烷)用于检测SERCA循环过程中的动态蛋白质相互作用。我们的研究表明SLN与PLB明显不同:1)SLN主要影响SERCA介导的Ca 2 + 吸收的Vmax,但不影响Ca 2 + 的泵浦亲和力; 2)SLN可以在高Ca 2 + 存在的情况下与SERCA结合,而PLB只能与无ATP结合的Ca 2 + 的E2状态相互作用。 3)与PLB不同,SLN在整个动力学循环中与SERCA相互作用,并促进SERCA泵的解耦。使用SERCA跨膜突变体,我们还显示PLB和SLN可以结合到相同的凹槽,但与SERCA上的不同残基集相互作用。这些数据共同表明SLN在功能上不同于PLB。 Ca 2 + 存在时其与SERCA相互作用的能力导致SERCA泵解耦并增加热量产生。

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