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The Role of the NDQ Motif in Sodium-Pumping Rhodopsins

机译:NDQ母题在钠泵制视紫红质中的作用

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摘要

Sodium-pumping rhodopsins (NaRs) are light-driven outward Na+ pumps. NaRs have a conserved Asn, Asp, and Gln motif (NDQ) in the third transmembrane helix (helix C). The NDQ motif is thus expected to play a crucial role in the operation of the Na+ pump. Herein, we studied the photocycles of the NDQ-motif mutants of Krokinobacter rhodopsin 2 (KR2), the first discovered NaR, by flash photolysis, to obtain insight into the mechanism of Na+ transport. For example, the KR2 N112A mutant did not accumulate the transient red-shifted Na+-bound state, suggesting that Asn112 is vital for the binding of Na+ ions. Additionally, Q123A and Q123V mutants showed significantly slower Na+ uptake and recovery of the initial state. Overall, the Gln123 residue was found to contribute to the optimization of the kinetics of sodium-ion uptake and release. These results demonstrate that the cooperative operation of the three residues of the NDQ motif are important in the operation of the Na+ pump.
机译:钠泵视紫质素(NaRs)是光驱动的向外Na +泵。 NaR在第三个跨膜螺旋(螺旋C)中具有保守的Asn,Asp和Gln基序(NDQ)。因此,预计NDQ基序将在Na +泵的运行中发挥关键作用。在这里,我们通过快速光解研究了最早发现的NaR的Krokinobacter rhodopsin 2(KR2)NDQ-motif突变体的光循环,以了解Na +转运的机理。例如,KR2 N112A突变体没有积累短暂的红移Na +结合状态,这表明Asn112对于Na +离子的结合至关重要。此外,Q123A和Q123V突变体显示Na +吸收和初始状态的恢复明显减慢。总的来说,发现Gln123残基有助于优化钠离子吸收和释放的动力学。这些结果表明,NDQ基序的三个残基的协同操作在Na +泵的操作中很重要。

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