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使用荧光标记的GTP类似物通过亲和探针毛细管电泳检测G蛋白。

Detection of G proteins by affinity probe capillary electrophoresis using a fluorescently labeled GTP analogue.

作者信息

Jameson Emily E, Cunliffe Jennifer M, Neubig Richard R, Sunahara Roger K, Kennedy Robert T

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

Anal Chem. 2003 Aug 15;75(16):4297-304. doi: 10.1021/ac0342976.

Abstract

An affinity probe capillary electrophoresis (APCE) assay for guanine-nucleotide-binding proteins (G proteins) was developed using BODIPY FL GTPgammaS (BGTPgammaS), a fluorescently labeled GTP analogue, as the affinity probe. In the assay, BGTPgammaS was incubated with samples containing G proteins and the resulting mixtures of BGTPgammaS-G protein complexes and free BGTPgammaS were separated by capillary electrophoresis and detected with laser-induced fluorescence detection. Separations were completed in less than 30 s using 25 mM Tris, 192 mM glycine at pH 8.5 as the electrophoresis buffer and applying 555 V/cm over a 4-cm separation distance. BGTPgammaS-Galpha(o) peak heights increased linearly with Galpha(o) up to approximately 200 nM using a 50 nM BGTPgammaS probe. The detection limit for Galpha(o) was 2 nM, corresponding to a mass detection limit of 3 amol. The high speed of the APCE assays allowed reaction kinetics and the dissociation constant (Kd) to be determined. The on-rate and off-rate of BGTPgammaS to Galpha(o) were 0.0068 +/- 0.0004 and 0.000 23 +/- 0.000 01 s(-1), respectively. The half-life of the BGTPgammaS-Galpha(o) complex was 3060 +/- 240 s and Kd was 8.6 +/- 0.7 nM. The estimates of these parameters are in good agreement with those obtained using established techniques, indicating the suitability of this method for such measurements. Lowering the temperature of the separation improved the detection of the complex, allowing the assay to be performed on a commercial instrument with longer separation times. Additionally, the capability of the technique to detect several G proteins based on their binding to BGTPgammaS was demonstrated with assays for Galpha and Galpha(i1) and for Ras and Rab3A.

摘要

利用荧光标记的鸟苷三磷酸类似物硼二吡咯氟戊酸(BODIPY FL GTPγS,BGTPγS)作为亲和探针,开发了一种用于鸟嘌呤核苷酸结合蛋白(G蛋白)的亲和探针毛细管电泳(APCE)分析方法。在该分析中,将BGTPγS与含有G蛋白的样品一起孵育,然后通过毛细管电泳分离所得的BGTPγS - G蛋白复合物和游离BGTPγS混合物,并采用激光诱导荧光检测进行检测。使用25 mM Tris、192 mM甘氨酸(pH 8.5)作为电泳缓冲液,并在4 cm的分离距离上施加555 V/cm的电压,分离在不到30秒内完成。使用50 nM的BGTPγS探针时,BGTPγS - Gα(o)的峰高随Gα(o)浓度线性增加,直至约200 nM。Gα(o)的检测限为2 nM,对应于3 amol的质量检测限。APCE分析的高速性使得能够测定反应动力学和解离常数(Kd)。BGTPγS与Gα(o)的结合速率常数和解离速率常数分别为0.0068±0.0004和0.000 23±0.000 01 s⁻¹。BGTPγS - Gα(o)复合物的半衰期为3060±240 s,Kd为8.6±0.7 nM。这些参数的估计值与使用既定技术获得的值高度一致,表明该方法适用于此类测量。降低分离温度可改善复合物的检测效果,从而能够在分离时间更长的商用仪器上进行该分析。此外,通过对Gα和Gα(i1)以及Ras和Rab3A的分析,证明了该技术基于G蛋白与BGTPγS的结合来检测多种G蛋白的能力。

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