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基于荧光共振能量转移(FRET)的肌浆网钙释放通道蛋白 1 内荧光蛋白插入定位。

FRET-based localization of fluorescent protein insertions within the ryanodine receptor type 1.

机构信息

Boston Biomedical Research Institute, Watertown, Massachusetts, United States of America.

出版信息

PLoS One. 2012;7(6):e38594. doi: 10.1371/journal.pone.0038594. Epub 2012 Jun 13.

Abstract

Fluorescent protein (FP) insertions have often been used to localize primary structure elements in mid-resolution 3D cryo electron microscopic (EM) maps of large protein complexes. However, little is known as to the precise spatial relationship between the location of the fused FP and its insertion site within a larger protein. To gain insights into these structural considerations, Förster resonance energy transfer (FRET) measurements were used to localize green fluorescent protein (GFP) insertions within the ryanodine receptor type 1 (RyR1), a large intracellular Ca(2+) release channel that plays a key role in skeletal muscle excitation contraction coupling. A series of full-length His-tagged GFP-RyR1 fusion constructs were created, expressed in human embryonic kidney (HEK)-293T cells and then complexed with Cy3NTA, a His-tag specific FRET acceptor. FRET efficiency values measured from each GFP donor to Cy3NTA bound to each His tag acceptor site were converted into intermolecular distances and the positions of each inserted GFP were then triangulated relative to a previously published X-ray crystal structure of a 559 amino acid RyR1 fragment. We observed that the chromophoric centers of fluorescent proteins inserted into RyR1 can be located as far as 45 Å from their insertion sites and that the fused proteins can also be located in internal cavities within RyR1. These findings should prove useful in interpreting structural results obtained in cryo EM maps using fusions of small fluorescent proteins. More accurate point-to-point distance information may be obtained using complementary orthogonal labeling systems that rely on fluorescent probes that bind directly to amino acid side chains.

摘要

荧光蛋白(FP)插入物常用于将一级结构元素定位在大型蛋白质复合物的中分辨率 3D 冷冻电子显微镜(EM)图谱中。然而,对于融合的 FP 与其在较大蛋白质中的插入位置之间的确切空间关系,知之甚少。为了深入了解这些结构考虑因素,使用Förster 共振能量转移(FRET)测量来定位 Ryanodine 受体型 1(RyR1)中的绿色荧光蛋白(GFP)插入物,Ryanodine 受体型 1 是一种大型细胞内 Ca(2+)释放通道,在骨骼肌兴奋收缩偶联中发挥关键作用。创建了一系列全长 His 标记的 GFP-RyR1 融合构建体,在人胚肾(HEK)-293T 细胞中表达,然后与 Cy3NTA 复合,Cy3NTA 是一种 His 标签特异性 FRET 受体。从每个 GFP 供体到结合每个 His 标签受体位点的 Cy3NTA 的 FRET 效率值被转换为分子间距离,然后相对于先前发表的 559 个氨基酸 RyR1 片段的 X 射线晶体结构对每个插入 GFP 的位置进行三角测量。我们观察到插入 RyR1 的荧光蛋白的发色团中心可以定位在离其插入位点 45 Å 的位置,并且融合蛋白也可以定位在 RyR1 内的内部腔室中。这些发现应该有助于解释使用小荧光蛋白融合物在冷冻 EM 图谱中获得的结构结果。更准确的点对点距离信息可以通过使用互补的正交标记系统获得,该系统依赖于直接结合氨基酸侧链的荧光探针。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1944/3374828/781c862ad818/pone.0038594.g001.jpg

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