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将环化荧光蛋白插入肌醇 1,4,5-三磷酸受体的配体结合域,以增强结合荧光配体时的 FRET。

Insertion of circularly permuted cyan fluorescent protein into the ligand-binding domain of inositol 1,4,5-trisphosphate receptor for enhanced FRET upon binding of fluorescent ligand.

机构信息

Division of Pharmacology, Department of Oral Biology, School of Dentistry, Health Sciences University of Hokkaido, Hokkaido, Japan.

Department of Biochemistry, Mie University, Graduate School of Medicine, Mie, Japan.

出版信息

Cell Calcium. 2022 Dec;108:102668. doi: 10.1016/j.ceca.2022.102668. Epub 2022 Oct 26.

Abstract

Binding of fluorescent ligand (FL) to the cyan fluorescent protein (CFP)-coupled ligand-binding domain of the inositol 1,4,5-trisphosphate (IP) receptor (CFP-LBP) produces fluorescence (Förster) resonance energy transfer (FRET). A competitive fluorescent ligand assay (CFLA), using the FRET signal from competition between FLs and IP, can measure IP concentration. The FRET signal should be enhanced by attaching a FRET donor to an appropriate position. Herein, we inserted five different circularly permuted CFPs in the loop between the second and third α-helices to generate membrane-targeted fluorescent ligand-binding proteins (LBPs). Two such proteins, LBP-cpC157 and LBP-cpC173, localized at the plasma membrane, displayed FRET upon binding the high-affinity ligand fluorescent adenophostin A (F-ADA), and exhibited a decreased fluorescence emission ratio (480 nm / 535 nm) by 1.6- to 1.8-fold that of CFP-LBP. In addition, binding of a fluorescent low-affinity ligand (F-LL) also reduced the fluorescence ratio in a concentration-dependent manner, with EC values for LBP-cpC157 and LBP-cpC173 of 34.7 nM and 27.6 nM, respectively. These values are comparable to that with CFP-LBP (29.2 nM), indicating that insertion of cpC157 and cpC173 did not disrupt LBP structure and function. The effect of 100 nM F-LL on the decrease in fluorescence ratio was reversed upon addition of IP, indicating binding competition between F-LL and IP. We also constructed cytoplasmic fluorescent proteins cyLBP-cpC157 and cyLBP-cpC173, and bound them to DYK beads for imaging analyses. Application of F-ADA decreased the fluorescence ratio of the beads from the periphery to the center over 3 - 5 min. Application of F-LL also decreased the fluorescence ratio of cyLBP-cpC157 and cyLBP-cpC173 by 20-25%, and subsequent addition of IP recovered the fluorescence ratio in a concentration-dependent manner. The EC value and Hill coefficient obtained by curve fitting against the IP-dependent recovery of fluorescence ratio can be used to estimate the IP concentration.

摘要

荧光配体(FL)与肌醇 1,4,5-三磷酸(IP)受体的荧光蛋白(CFP)偶联配体结合域(CFP-LBP)结合会产生荧光(福斯特)共振能量转移(FRET)。使用 FL 与 IP 竞争产生的 FRET 信号的竞争性荧光配体测定法(CFLA)可以测量 IP 浓度。通过将 FRET 供体连接到适当的位置,FRET 信号应该会增强。在此,我们在第二和第三α螺旋之间的环中插入了五个不同的环化 CPFs,以生成靶向膜的荧光配体结合蛋白(LBPs)。两种这样的蛋白质,LBP-cpC157 和 LBP-cpC173,定位于质膜,与高亲和力配体荧光阿糖腺苷 A(F-ADA)结合时显示出 FRET,并显示出荧光发射比(480nm/535nm)降低了 1.6-1.8 倍,与 CFP-LBP 相比。此外,荧光低亲和力配体(F-LL)的结合也以浓度依赖的方式降低了荧光比,LBP-cpC157 和 LBP-cpC173 的 EC 值分别为 34.7nm 和 27.6nm。这些值与 CFP-LBP(29.2nm)相当,表明插入 cpC157 和 cpC173 并没有破坏 LBP 的结构和功能。当添加 IP 时,100nM F-LL 的作用使荧光比降低的程度得到逆转,表明 F-LL 和 IP 之间存在结合竞争。我们还构建了细胞质荧光蛋白 cyLBP-cpC157 和 cyLBP-cpC173,并将它们与 DYK 珠结合用于成像分析。F-ADA 的应用会在 3-5 分钟内降低从外围到中心的珠子的荧光比。F-LL 的应用也使 cyLBP-cpC157 和 cyLBP-cpC173 的荧光比降低了 20-25%,随后添加 IP 会以浓度依赖的方式恢复荧光比。通过对 IP 依赖性荧光比恢复的曲线拟合获得的 EC 值和 Hill 系数可用于估计 IP 浓度。

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