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首页> 外文期刊>Biochemistry >The extent of pyrene excimer fluorescence emission is a reflector of distance and flexibility: Analysis of the segment linking the LDL receptor-binding and tetramerization domains of apolipoprotein E3
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The extent of pyrene excimer fluorescence emission is a reflector of distance and flexibility: Analysis of the segment linking the LDL receptor-binding and tetramerization domains of apolipoprotein E3

机译:exc准分子荧光发射的程度是距离和灵活性的反映:连接载脂蛋白E3的LDL受体结合和四聚结构域的链段分析

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摘要

Pyrene is a spatially sensitive probe that displays an ensemble of monomeric fluorescence emission peaks (375-405 nm) and an additional band (called excimer) at ~460 nm when two fluorophores are spatially proximal. We examined if there is a correlation between distance between two pyrenes on an α-helical structure and excimer/monomer (e/m) ratio. Using structure-guided design, pyrene maleimide was attached to pairs of Cys residues separated by ~5 ? increments on helix 2 of the N-terminal domain of apolipoprotein E3 (apoE3). Fluorescence spectral analysis revealed an intense excimer band when the probes were ~5 ? from each other with an e/m ratio of ~3.0, which decreased to ~1.0 at 20 ?. An inverse correlation between e/m ratio and the distance between pyrenes was observed, with the probe and helix flexibility also contributing to the extent of excimer formation. We verified this approach by estimating the distance between T57C and C112 (located on helices 2 and 3, respectively) to be 5.2 ? (4.9 ? from NMR and 5.7 ? from the X-ray structure). Excimer formation was also noted to a significant extent with probes located in the linker segment, suggesting spatial proximity (10-15 ?) to corresponding sites on neighboring molecules in the tetrameric configuration of apoE. We infer that oligomerization via the C-terminal domain juxtaposes the linker segments from neighboring apoE molecules. This study offers new insights into the conformation of tetrameric apoE and presents the use of pyrene as a powerful probe for studying protein spatial organization.
机译:is是一种空间敏感的探针,当两个荧光团在空间上接近时,它在〜460 nm处显示单体荧光发射峰(375-405 nm)和一个附加谱带(称为准分子)的集合。我们检查了α-螺旋结构上两个pyr之间的距离与准分子/单体(e / m)之比之间是否存在相关性。采用结构导向设计,将male马来酰亚胺连接到成对的Cys残基上,这些残基之间的间隔为〜5?载脂蛋白E3(apoE3)N端结构域的螺旋2上的增量。荧光光谱分析表明,当探针为〜5?时,准分子带很强。彼此之间的e / m比率为〜3.0,在20?时下降至〜1.0。观察到e / m比与pyr之间的距离成反比,探针和螺旋的柔韧性也有助于准分子的形成。我们通过估计T57C和C112(分别位于螺旋2和3上)之间的距离为5.2?来验证这种方法。 (来自NMR的4.9λ和来自X射线结构的5.7λ)。探针位于连接体区段中也显着地形成了准分子,表明与apoE的四聚体构型的邻近分子上的相应位点具有空间接近性(10-15?)。我们推断通过C-末端结构域的寡聚使来自相邻的apoE分子的接头片段并列。这项研究提供了对四聚apoE的构象的新见解,并提出了使用of作为研究蛋白质空间组织的有力探针。

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