首页> 外文期刊>Journal of Molecular Biology >Intrinsic motions in the N-terminal domain of an ionotropic glutamate receptor detected by fluorescence correlation spectroscopy.
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Intrinsic motions in the N-terminal domain of an ionotropic glutamate receptor detected by fluorescence correlation spectroscopy.

机译:离子相关谷氨酸受体的N末端域的内在运动通过荧光相关光谱法检测到。

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Ionotropic glutamate receptors (iGluRs) mediate excitatory neurotransmission in the central nervous system and play key roles in brain development and disease. iGluRs have two distinct extracellular domains, but the functional role of the distal N-terminal domain (NTD) is poorly understood. Crystal structures of the NTD from some non-N-methyl-d-aspartate (NMDA) iGluRs are consistent with a rigid body that facilitates receptor assembly but suggest an additional dynamic role that could modulate signaling. Here, we moved beyond spatial and temporal limitations of conventional protein single-molecule spectroscopy by employing correlation analysis of extrinsic oxazine fluorescence fluctuations. We observed nanosecond (ns)-to-microsecond (mus) motions of loop segments and helices within a region of an AMPA-type iGluR NTD, which has been identified previously to be structurally variable. Our data reveal that the AMPA receptor NTD undergoes rapid conformational fluctuations, suggesting an inherent allosteric capacity for this domain in addition to its established assembly function.
机译:离子型谷氨酸受体(iGluRs)介导中枢神经系统的兴奋性神经传递,并在大脑发育和疾病中发挥关键作用。 iGluR具有两个不同的细胞外结构域,但人们对远端N末端结构域(NTD)的功能作用知之甚少。来自一些非N-甲基-d-天冬氨酸(NMDA)iGluR的NTD的晶体结构与一个刚性主体相一致,该刚性主体有助于受体组装,但暗示了可以调节信号传导的其他动态作用。在这里,我们通过对外部恶嗪荧光波动的相关分析,超越了常规蛋白质单分子光谱的时空限制。我们观察到AMPA型iGluR NTD区域内的环段和螺旋的纳秒级(ns)到微秒级(mus)运动,该运动先前已被确定为结构可变。我们的数据表明,AMPA受体NTD经历了快速的构象波动,表明该结构域除了已建立的装配功能外,还具有固有的变构能力。

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