Vertex Pharmaceuticals Incorporated, 130 Waverly St, Cambridge, MA 02139-4211, USA. john
J Pharm Sci. 2012 Jan;101(1):92-101. doi: 10.1002/jps.22755. Epub 2011 Sep 15.
Membrane proteins are attractive therapeutic targets, however the presence of detergents complicates biophysical binding measurements. Difficulties in determining quantitative dissociation constants for problematic membrane proteins were addressed by combining analytical ultracentrifugation and classical light scattering techniques. Validation of the algorithm used to calculate dissociation constants from sedimentation equilibrium experiments was demonstrated by analyzing binding data of the inhibitor Y-27632 to rho-kinase (ROCK). Kd's of 1.3 ± 0.7 and 52 ± 27 µM were calculated for ROCK constructs (S6-R415) and (M71-E379) respectively, consistent with previously published Ki's of 1.4 ± 0.1 and > 30 µM. Extension of the algorithm to membrane proteins required the collection of light scattering data to determine the partial specific volume, ν, for the membrane protein-detergent complex. Vitamin B12 binding to the bacterial protein btuB in octyl β-D-glucopyranoside (β-OG) illustrates the applicability of the method. A ν of 0.781 ml/g was determined for the btuB-β-OG complex. Incorporating this value into the algorithm generated a Kd of 7.0 ± 1.5 µM for the vitamin B12-btuB affinity. A Kd of 9.7 ± 2.7 µM was determined by equilibrium dialysis under similar experimental conditions. Successfully applying AUC to quantifying small-molecule ligand affinities to membrane proteins represents a significant advance to the field.
膜蛋白是很有吸引力的治疗靶点,然而去污剂的存在使生物物理结合测量变得复杂。通过将分析超速离心和经典光散射技术相结合,解决了难以确定有问题的膜蛋白的定量离解常数的问题。通过分析抑制剂 Y-27632 与 rho-kinase (ROCK)的结合数据,验证了用于从沉降平衡实验计算离解常数的算法的有效性。分别为 ROCK 结构(S6-R415)和(M71-E379)计算出的 Kd 值为 1.3 ± 0.7 和 52 ± 27 μM,与先前发表的 Ki 值 1.4 ± 0.1 和 > 30 μM 一致。该算法扩展到膜蛋白需要收集光散射数据以确定膜蛋白-去污剂复合物的偏比容 ν。维生素 B12 在辛基 β-D-吡喃葡萄糖苷(β-OG)中与细菌蛋白 btuB 的结合说明了该方法的适用性。确定 btuB-β-OG 复合物的 ν 值为 0.781 ml/g。将此值纳入算法可生成维生素 B12-btuB 亲和力的 Kd 值为 7.0 ± 1.5 μM。在类似的实验条件下,通过平衡透析确定 Kd 值为 9.7 ± 2.7 μM。成功地将 AUC 应用于定量小分子配体与膜蛋白的亲和力是该领域的重大进展。