首页> 美国卫生研究院文献>Biochemical Journal >Probing nucleotide-binding effects on backbone dynamics and folding of the nucleotide-binding domain of the sarcoplasmic/endoplasmic-reticulum Ca2+-ATPase.
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Probing nucleotide-binding effects on backbone dynamics and folding of the nucleotide-binding domain of the sarcoplasmic/endoplasmic-reticulum Ca2+-ATPase.

机译:探讨核苷酸结合对骨动力学/肌浆网/内质网Ca2 + -ATPase核苷酸结合域的折叠的影响。

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摘要

In muscle cells, SERCA (sarcoplasmic/endoplasmic-reticulum Ca2+-ATPase) plays a key role in restoring cytoplasmic Ca2+ levels to resting concentrations after transient surges caused by excitation-coupling cycles. The mechanism by which Ca2+ is translocated to the lumen of the ER (endoplasmic reticulum) involves major conformational rearrangements among the three cytoplasmic domains: actuator (A), nucleotide-binding (N) and phosphorylation (P) domains; and within the transmembrane Ca2+-binding domain of SERCA. CD, fluorescence spectroscopy and NMR spectroscopy were used in the present study to probe the conformation and stability of the isolated N domain of SERCA (SERCA-N), in the presence and absence of AMP-PNP (adenosine 5'-[beta,gamma-imido]triphosphate). CD and tryptophan fluorescence spectroscopy results established that the effects of nucleotide binding were not readily manifested on the global fold and structural stability of SERCA-N. 15N-backbone-relaxation experiments revealed site-specific changes in backbone dynamics that converge on the central beta-sheet domain. Nucleotide binding produced diverse effects on dynamics, with enhanced mobility observed for Ile369, Cys420, Arg467, Asp568, Phe593 and Gly598, whereas rigidifying effects were found for Ser383, Leu419, Thr484 and Thr532. These results demonstrate that the overall fold and backbone motional properties of SERCA-N remained essentially the same in the presence of AMP-PNP, yet revealing evidence for internal counter-balancing effects on backbone dynamics upon binding the nucleotide, which propagate through the central beta-sheet.
机译:在肌肉细胞中,SERCA(肌浆/内质网Ca2 + -ATPase)在将励磁耦合循环引起的短暂激增后,将细胞质Ca2 +水平恢复至静止浓度起着关键作用。 Ca 2+转移到ER(内质网)腔的机制涉及三个胞质域之间的主要构象重排:致动器(A),核苷酸结合(N)和磷酸化(P)域;并且在SERCA的跨膜Ca 2+结合域内。在本研究中,使用CD,荧光光谱和NMR光谱研究了在存在和不存在AMP-PNP(腺苷5'-β,γ)的情况下SERCA的分离N结构域(SERCA-N)的构象和稳定性。 -亚氨基]三磷酸)。 CD和色氨酸荧光光谱结果表明,核苷酸结合的影响不容易体现在SERCA-N的整体折叠和结构稳定性上。 15N骨干松弛实验显示,骨干动力学的特定于站点的变化集中在中央β-sheet域上。核苷酸结合对动力学产生多种影响,其中Ile369,Cys420,Arg467,Asp568,Phe593和Gly598的迁移率增强,而Ser383,Leu419,Thr484和Thr532则发现了刚性增强作用。这些结果表明,在存在AMP-PNP的情况下,SERCA-N的总体折叠和骨架运动性质基本保持不变,但揭示了在结合核苷酸后通过内部β传播对骨架动力学产生内部反平衡作用的证据。 -片。

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