Towner P, Gaertner W, Walckhoff B, Oesterhelt D, Hopf H
Eur J Biochem. 1981 Jul;117(2):353-9. doi: 10.1111/j.1432-1033.1981.tb06345.x.
The rate of regeneration of rhodopsin, from 11-cis-retinal and opsin, and bacteriorhodopsin from all-trans-retinal and bacterio-opsin, in the presence or absence of compounds whose structures partially resemble retinal were measured. Some of these compounds severely slowed down the regeneration process, but did not influence the extent of regeneration. In the case of compounds with a carbonyl functional group they were not joined to the active site of the apo-protein via a Schiff's base linkage since after treatment with NaBH4 an active apo-protein remained. The most effective inhibitors of rhodopsin regeneration were molecules whose structure could be superimposed on 9-cis or 11-cis retinal up to carbon atom 11. These C13 and C15 molecules were not distinguished between aldehyde, ketone or alcohol functional groups. The regeneration of bacteriorhodopsin was not inhibited by retinal analogues with short side chains. The most effective inhibitors were the all-trans C17-aldehyde (beta-ionylideneacetaldehyde) or C18-ketone (beta-ionylidenepent-3-ene-2-one) which, compared to retinal, lack two or three carbon atoms from the end of the poylene chain. The inhibition was very dependent upon the presence of the all-trans isomer and required aldehyde or ketone as functional group nitriles and alcohols were less effective. However, similarly to retinol, the all-trans C17 and C18 alcohols underwent a bathochromic shift and showed fine-structured spectra when mixed with bacterio-opsin.
在有或没有结构部分类似于视黄醛的化合物存在的情况下,测量了视紫红质从11-顺式视黄醛和视蛋白再生的速率,以及细菌视紫红质从全反式视黄醛和细菌视蛋白再生的速率。其中一些化合物严重减缓了再生过程,但不影响再生程度。对于具有羰基官能团的化合物,它们不是通过席夫碱键与脱辅基蛋白的活性位点结合的,因为用NaBH4处理后仍保留有活性的脱辅基蛋白。视紫红质再生的最有效抑制剂是其结构在碳原子11之前可与9-顺式或11-顺式视黄醛叠加的分子。这些C13和C15分子在醛、酮或醇官能团之间没有区别。细菌视紫红质的再生不受短侧链视黄醛类似物的抑制。最有效的抑制剂是全反式C17-醛(β-紫罗酮乙醛)或C18-酮(β-紫罗酮-3-烯-2-酮),与视黄醛相比,它们在多烯链末端缺少两个或三个碳原子。抑制作用非常依赖于全反式异构体的存在,并且需要醛或酮作为官能团,腈和醇的效果较差。然而,与视黄醇类似,全反式C17和C18醇与细菌视蛋白混合时会发生红移并显示出精细结构的光谱。