Yang T, Snider B B, Oprian D D
Graduate Department of Biochemistry and Volen Center for Complex Systems, Brandeis University, Waltham, MA 02254, USA.
Proc Natl Acad Sci U S A. 1997 Dec 9;94(25):13559-64. doi: 10.1073/pnas.94.25.13559.
Two different mutations of the active-site Lys-296 in rhodopsin, K296E and K296M, have been found to cause autosomal dominant retinitis pigmentosa (ADRP). In vitro studies have shown that both mutations result in constitutive activation of the protein, suggesting that the activated state of the receptor may be responsible for retinal degeneration in patients with these mutations. Previous work has highlighted the potential of retinylamine analogs as active-site directed inactivators of constitutively active mutants of rhodopsin with the idea that these or related compounds might be used therapeutically for cases of ADRP involving mutations of the active-site Lys. Unfortunately, however, amine derivatives of 11-cis-retinal, although highly effective against a K296G mutant of rhodopsin, were without affect on the two naturally occurring ADRP mutants, presumably because of the greater steric bulk of Glu and Met side chains in comparison to Gly. For this reason we synthesized a retinylamine analog one carbon shorter than the parent 11-cis-retinal and show that this compound is indeed an effective inhibitor of both the K296E and K296M mutants. The 11-cis C19 retinylamine analog 1 inhibits constitutive activation of transducin by these mutants and their constitutive phosphorylation by rhodopsin kinase, and it does so in the presence of continuous illumination from room lights.
视紫红质活性位点赖氨酸-296(K296)的两种不同突变,即K296E和K296M,已被发现可导致常染色体显性遗传性视网膜色素变性(ADRP)。体外研究表明,这两种突变都会导致该蛋白的组成型激活,这表明受体的激活状态可能是这些突变患者视网膜变性的原因。先前的研究强调了视黄胺类似物作为视紫红质组成型活性突变体的活性位点定向失活剂的潜力,认为这些化合物或相关化合物可能用于治疗涉及活性位点赖氨酸突变的ADRP病例。然而,不幸的是,11-顺式视黄醛的胺衍生物虽然对视紫红质的K296G突变体非常有效,但对这两种天然存在的ADRP突变体却没有影响,推测是因为与甘氨酸相比,谷氨酸和甲硫氨酸侧链的空间位阻更大。因此,我们合成了一种比母体11-顺式视黄醛短一个碳原子的视黄胺类似物,并表明该化合物确实是K296E和K296M突变体的有效抑制剂。11-顺式C19视黄胺类似物1可抑制这些突变体对转导素的组成型激活及其被视紫红质激酶的组成型磷酸化,并且在室内灯光持续照射的情况下也能做到这一点。