Hardie R C, Peretz A, Suss-Toby E, Rom-Glas A, Bishop S A, Selinger Z, Minke B
Department of Zoology, Cambridge University, UK.
Nature. 1993 Jun 17;363(6430):634-7. doi: 10.1038/363634a0.
Protein kinase C (PKC) is a key enzyme for many cellular processes but its physiological roles are poorly understood. An excellent opportunity to investigate the function of PKC has been provided by the identification of an eye-specific PKC in Drosophila and a null PKC mutant, inaCP209 (refs 5,6). Bright conditioning lights delivered to inaC photoreceptors lead to an abnormal loss of sensitivity in whole cell recordings from dissociated ommatidia; this has been interpreted as 'hyper-adaptation' and PKC's role has been suggested to be distinct from light adaptation. A presumably related finding is that during intense light, the response of inaC declines to baseline. Invertebrate photoreceptors use the phosphoinositide signalling cascade, responding to single photons with so-called quantum bumps which sum to form the macroscopic response to light. Light adaptation allows photoreceptors to adjust their sensitivity over the enormous range of ambient intensities. Although the molecular mechanism of light adaptation remains obscure, it is a negative-feedback process mediated by a rise in cytosolic calcium and a decrease in bump size. We now show that under physiological conditions light adaptation is severely reduced in inaC, suggesting that eye-specific PKC, itself activated by a rise in cytosolic calcium and diacylglycerol, is required for adaptation. Furthermore, we show that in the absence of PKC individual bumps fail to terminate normally, an effect that can account for the pleiotropic manifestations of the inaC phenotype.
蛋白激酶C(PKC)是许多细胞过程中的关键酶,但其生理作用仍知之甚少。果蝇中眼特异性PKC和无效PKC突变体inaCP209的鉴定,为研究PKC的功能提供了绝佳机会(参考文献5,6)。对inaC光感受器施加明亮的条件光,会导致解离的小眼全细胞记录中出现异常的敏感性丧失;这被解释为“过度适应”,并且有人认为PKC的作用与光适应不同。一个可能相关的发现是,在强光下,inaC的反应会降至基线。无脊椎动物光感受器利用磷酸肌醇信号级联反应,对单个光子产生所谓的量子突增反应,这些突增反应总和形成对光的宏观反应。光适应使光感受器能够在巨大的环境强度范围内调节其敏感性。尽管光适应的分子机制仍不清楚,但它是一个由胞质钙升高和突增大小减小介导的负反馈过程。我们现在表明,在生理条件下,inaC中的光适应严重降低,这表明眼特异性PKC本身由胞质钙和二酰甘油升高激活,是适应所必需的。此外,我们表明,在没有PKC的情况下,单个突增不能正常终止,这一效应可以解释inaC表型的多效性表现。