Farrens D L, Altenbach C, Yang K, Hubbell W L, Khorana H G
Department of Biology, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
Science. 1996 Nov 1;274(5288):768-70. doi: 10.1126/science.274.5288.768.
Conformational changes are thought to underlie the activation of heterotrimeric GTP-binding protein (G protein)-coupled receptors. Such changes in rhodopsin were explored by construction of double cysteine mutants, each containing one cysteine at the cytoplasmic end of helix C and one cysteine at various positions in the cytoplasmic end of helix F. Magnetic dipolar interactions between spin labels attached to these residues revealed their proximity, and changes in their interaction upon rhodopsin light activation suggested a rigid body movement of helices relative to one another. Disulfide cross-linking of the helices prevented activation of transducin, which suggests the importance of this movement for activation of rhodopsin.
构象变化被认为是异源三聚体GTP结合蛋白(G蛋白)偶联受体激活的基础。通过构建双半胱氨酸突变体来探索视紫红质中的此类变化,每个突变体在螺旋C的胞质端含有一个半胱氨酸,在螺旋F的胞质端的不同位置含有一个半胱氨酸。附着于这些残基的自旋标记之间的磁偶极相互作用揭示了它们的接近程度,视紫红质光激活时其相互作用的变化表明螺旋之间存在刚体运动。螺旋的二硫键交联阻止了转导素的激活,这表明这种运动对视紫红质激活的重要性。