Baker E K, Colley N J, Zuker C S
Department of Biology, University of California at San Diego, La Jolla 92093-0649.
EMBO J. 1994 Oct 17;13(20):4886-95. doi: 10.1002/j.1460-2075.1994.tb06816.x.
In Drosophila, biogenesis of the major rhodopsin, Rh1, is dependent on the presence of a photoreceptor cell-specific cyclophilin, NinaA. In ninaA mutants, Rh1 is retained within the endoplasmic reticulum and rhodopsin levels are reduced > 100-fold. Cyclophilins have been shown to be peptidyl-prolyl cis-trans isomerases and have been implicated in catalyzing protein folding. We have generated transgenic animals expressing different functional rhodopsins containing a histidine tag. We isolated these molecules from wild-type and ninaA mutant retinas, and have demonstrated that in vivo NinaA forms a specific stable protein complex with its target Rh1. We also expressed ninaA under an inducible promoter and showed that NinaA is required quantitatively for Rh1 biogenesis. These results provide the first evidence for a biologically relevant physical interaction between a cyclophilin and its cellular target, and suggest that the normal cellular role of this class of cyclophilins is to function as chaperones, possibly escorting their protein substrates through the secretory pathway.
在果蝇中,主要视紫红质Rh1的生物合成依赖于光感受器细胞特异性亲环蛋白NinaA的存在。在ninaA突变体中,Rh1保留在内质网中,视紫红质水平降低超过100倍。亲环蛋白已被证明是肽基脯氨酰顺反异构酶,并参与催化蛋白质折叠。我们已培育出表达含有组氨酸标签的不同功能性视紫红质的转基因动物。我们从野生型和ninaA突变体视网膜中分离出这些分子,并证明在体内NinaA与其靶标Rh1形成特定的稳定蛋白复合物。我们还在可诱导启动子下表达ninaA,并表明NinaA在数量上是Rh1生物合成所必需的。这些结果为亲环蛋白与其细胞靶标之间生物学相关的物理相互作用提供了首个证据,并表明这类亲环蛋白的正常细胞作用是作为伴侣蛋白,可能通过分泌途径护送其蛋白质底物。