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首页> 外文期刊>Biochemistry >NMR Solution Structure of Neurotensin in Membrane-Mimetic Environments: Molecular Basis for Neurotensin Receptor Recognition
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NMR Solution Structure of Neurotensin in Membrane-Mimetic Environments: Molecular Basis for Neurotensin Receptor Recognition

机译:膜模拟环境中神经降压素的NMR溶液结构:神经降压素受体识别的分子基础

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摘要

Neurotensin (NT) is a 13-residue neuropeptide that exerts multiple biological functions in the central and peripheral nervous system. Little is known about the structure of this neuropeptide, and what is known only concerns its C-terminal part. We determined here for the first time the structure of the full-length NT in membrane-mimicking environments by means of classical proton-proton distance constraints derived from solution-state NMR spectroscopy. NT was found to have a structure at both its N and C termini, whereas the central region of NT remains highly flexible. In TFE and HFIP solutions, the NT C-terminus presents an extended slightly incurved structure, whereas in DPC it has a beta turn. The N-terminal region of NT possesses great adaptability and accessibility to the microenvironment in the three media studied. Altogether, our work demonstrates a structure of NT fully compatible with its NTR-bound state.
机译:神经降压素(NT)是13个残基的神经肽,在中枢神经系统和周围神经系统中发挥多种生物学功能。关于这种神经肽的结构知之甚少,而已知的仅涉及其C端部分。在此,我们首次通过溶液状态NMR光谱得出的经典质子-质子距离约束条件,确定了膜模拟环境中全长NT的结构。发现NT在其N和C末端均具有结构,而NT的中心区域仍然高度柔性。在TFE和HFIP解决方案中,NT C末端呈现扩展的略微弯曲的结构,而在DPC中则具有beta弯角。在三种研究的培养基中,NT的N末端区域对微环境具有很大的适应性和可及性。总之,我们的工作证明了NT与其NTR结合状态完全兼容的结构。

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