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果蝇隐花色素的作用光谱。

Action spectrum of Drosophila cryptochrome.

作者信息

VanVickle-Chavez Sarah J, Van Gelder Russell N

机构信息

Departments of Ophthalmology and Visual Sciences, Washington University Medical School, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 2007 Apr 6;282(14):10561-6. doi: 10.1074/jbc.M609314200. Epub 2007 Feb 6.

Abstract

Cryptochromes are a highly conserved class of UV-A/blue light photoreceptors. In Drosophila, cryptochrome is required for the normal entrainment of circadian rhythms to light dark cycles. The photocycle and molecular mechanism of animal cryptochrome photoreception are presently unknown. Drosophila cryptochrome undergoes light-dependent degradation when heterologously expressed in Schneider-2 cells. We have generated Drosophila luciferase-cryptochrome fusion proteins to more precisely monitor light-dependent cryptochrome degradation. We found that the luciferase-cryptochrome fusion protein undergoes light-dependent degradation with luciferase activity declining approximately 50% within 5 min of light exposure and approximately 85% within 1 h of light exposure. Degradation is inhibited by MG-132, consistent with a proteasomal degradation mechanism. Irradiance-response curves yield an action spectrum similar to absorption spectra for prokaryotic and eukaryotic cryptochromes with highest sensitivity in the UV-A. A luciferase-cryptochrome fusion protein lacking the terminal 15 amino acids is stably expressed in the dark but demonstrates increased sensitivity to light-induced degradation. The conferral of light-dependent degradation on a heterologous protein by fusion to cryptochrome may be a useful tool for probing protein function in cell expression systems.

摘要

隐花色素是一类高度保守的UV-A/蓝光光感受器。在果蝇中,隐花色素是使昼夜节律正常适应明暗周期所必需的。目前尚不清楚动物隐花色素光感受的光循环和分子机制。当在Schneider-2细胞中异源表达时,果蝇隐花色素会发生光依赖型降解。我们构建了果蝇荧光素酶-隐花色素融合蛋白,以更精确地监测光依赖型隐花色素降解。我们发现,荧光素酶-隐花色素融合蛋白会发生光依赖型降解,光照5分钟内荧光素酶活性下降约50%,光照1小时内下降约85%。MG-132可抑制降解,这与蛋白酶体降解机制一致。辐照度-反应曲线产生的作用光谱类似于原核和真核隐花色素的吸收光谱,在UV-A波段具有最高灵敏度。缺少末端15个氨基酸的荧光素酶-隐花色素融合蛋白在黑暗中稳定表达,但对光诱导降解的敏感性增加。通过与隐花色素融合赋予异源蛋白光依赖型降解特性,可能是在细胞表达系统中探究蛋白功能的一种有用工具。

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