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利用分子模拟解析肌浆网脂质蛋白对肌浆网Ca2+-ATP酶1a的抑制机制

Deciphering the Mechanism of Inhibition of SERCA1a by Sarcolipin Using Molecular Simulations.

作者信息

Barbot Thomas, Beswick Veronica, Montigny Cédric, Quiniou Éric, Jamin Nadège, Mouawad Liliane

机构信息

Institute for Integrative Biology of the Cell (I2BC), CEA, CNRS, Université Paris-Saclay, Gif-sur-Yvette, France.

Physics Department, Evry-Val-d'Essonne University, Paris-Saclay University, Evry, France.

出版信息

Front Mol Biosci. 2021 Feb 4;7:606254. doi: 10.3389/fmolb.2020.606254. eCollection 2020.

Abstract

SERCA1a is an ATPase calcium pump that transports Ca from the cytoplasm to the sarco/endoplasmic reticulum lumen. Sarcolipin (SLN), a transmembrane peptide, regulates the activity of SERCA1a by decreasing its Ca transport rate, but its mechanism of action is still not well-understood. To decipher this mechanism, we have performed normal mode analysis in the all-atom model, with the SERCA1a-SLN complex, or the isolated SERCA1a, embedded in an explicit membrane. The comparison of the results allowed us to provide an explanation at the atomic level for the action of SLN that is in good agreement with experimental observations. In our analyses, the presence of SLN locally perturbs the TM6 transmembrane helix and as a consequence modifies the position of D800, one of the key metal-chelating residues. Additionally, it reduces the flexibility of the gating residues, V304, and E309 in TM4, at the entrance of the Ca binding sites, which would decrease the affinity for Ca. Unexpectedly, SLN has also an effect on the ATP binding site more than 35 Å away, due to the straightening of TM5, a long helix considered as the spine of the protein. The straightening of TM5 modifies the structure of the P-N linker that sits above it, and which comprises the DKTG conserved motif, resulting in an increase of the distance between ATP and the phosphorylation site. As a consequence, the turn-over rate could be affected. All this gives SERCA1a the propensity to go toward a Ca low-affinity E2-like state in the presence of SLN and toward a Ca high-affinity E1-like state in the absence of SLN. In addition to a general mechanism of inhibition of SERCA1a regulatory peptides, this study also provides an insight into the conformational transition between the E2 and E1 states.

摘要

肌浆网Ca²⁺-ATP酶1a(SERCA1a)是一种ATP酶钙泵,可将Ca²⁺从细胞质转运至肌浆网/内质网腔。肌浆网素(SLN)是一种跨膜肽,通过降低其Ca²⁺转运速率来调节SERCA1a的活性,但其作用机制仍未完全明确。为了解析这一机制,我们在全原子模型中进行了正常模式分析,将SERCA1a-SLN复合物或分离的SERCA1a嵌入明确的膜中。结果比较使我们能够在原子水平上对SLN的作用给出解释,这与实验观察结果高度一致。在我们的分析中,SLN的存在会局部干扰跨膜螺旋6(TM6),从而改变关键金属螯合残基之一天冬氨酸800(D800)的位置。此外,它还降低了Ca²⁺结合位点入口处跨膜螺旋4(TM4)中门控残基缬氨酸304(V304)和谷氨酸309(E309)的灵活性,这会降低对Ca²⁺的亲和力。出乎意料的是,由于被视为蛋白质主干的长螺旋跨膜螺旋5(TM5)变直,SLN对35 Å以外的ATP结合位点也有影响。TM5变直会改变位于其上方且包含DKTG保守基序的P-N连接体的结构,导致ATP与磷酸化位点之间的距离增加。因此,周转率可能会受到影响。所有这些使得SERCA1a在存在SLN时倾向于转变为低Ca²⁺亲和力的E2样状态,而在不存在SLN时倾向于转变为高Ca²⁺亲和力的E1样状态。除了对SERCA1a调节肽的一般抑制机制外,本研究还深入探讨了E2和E1状态之间的构象转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e10/7890198/c0bd55e70a32/fmolb-07-606254-g0001.jpg

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