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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Oligomeric state of lipocalin-1 (LCN1) by multiangle laser light scattering and fluorescence anisotropy decay.
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Oligomeric state of lipocalin-1 (LCN1) by multiangle laser light scattering and fluorescence anisotropy decay.

机译:多聚激光散射和荧光各向异性衰减的脂质糖素-1(LCN1)的低聚状态。

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摘要

Multiangle laser light scattering and fluorescence anisotropy decay measurements clarified the oligomeric states of native and recombinant tear lipocalin (lipocalin-1, TL). Native TL is monomeric. Recombinant TL (5-68 microM) with or without the histidine tag shows less than 7% dimer formation that is not in equilibrium with the monomeric form. Fluorescence anisotropy decay showed a correlation time of 9-10 ns for TL (10 microM-1 mM). Hydrodynamic calculations based on the crystallographic structure of a monomeric TL mutant closely concur with the observed correlation time. The solution properties calculated with HYDROPRO and SOLPRO programs from the available crystallographic structure of a monomeric TL mutant concur closely with the observed fluorescence anisotropy decay. The resulting model shows that protein topology is the major determinant of rotational correlation time and accounts for deviation from the Stokes-Einstein relation. The data challenge previous gel filtration studies to show that native TL exists predominantly as a monomer in solution rather than as a dimer. Delipidation of TL results in a formation of a complex oligomeric state (up to 25%). These findings are important as the dynamic processes in the tear film are limited by diffusional, translational as well as rotational, properties of the protein.
机译:多聚激光散射和荧光各向异性衰变测量澄清了天然和重组泪液的低聚状态(Lipocalin-1,T1)。本地TL是单体。具有或不具有组氨酸标签的重组T1(5-68微米)显示出小于7%的二聚体形成,其不与单体形式平衡。荧光各向异性衰减显示T1(10μm-1mm)的9-10ns的相关时间。基于单体T1突变体的晶体结构的流体动力学计算与观察到的相关时间紧张。用Hymeric T1突变体的可用晶体结构的水解晶体和SOLPRO程序计算的溶液特性与观察到的荧光各向异性衰减紧密相互作用。所得模型表明,蛋白质拓扑是旋转相关时间的主要决定因素,以及偏离斯托克斯 - 爱因斯坦关系的差异。数据挑战以前的凝胶过滤研究,以表明天然T1主要存在于溶液中的单体而不是作为二聚体。 T1的Dlipidatiate导致形成复合的低聚状态(高达25%)。这些发现是重要的,因为撕裂膜中的动态过程受蛋白质的扩散,平移以及旋转性质的限制。

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