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Genetic and Molecular Characterization of a Cryptochrome from the Filamentous Fungus Neurospora crassa

机译:丝状真菌Neurospora crassa隐色染料的遗传和分子表征

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In plants and animals, cryptochromes function as either photoreceptors or circadian clock components. We have examined the cryptochrome from the filamentous fungus Neurospora crassa and demonstrate that Neurospora cry encodes a DASH-type cryptochrome that appears capable of binding flavin adenine dinucleotide (FAD) and methenyltetrahydrofolate (MTHF). The cry transcript and CRY protein levels are strongly induced by blue light in a wc-1-dependent manner, and cry transcript is circadianly regulated, with a peak abundance opposite in phase to frq. Neither deletion nor overexpression of cry appears to perturb the free-running circadian clock. However, cry disruption knockout mutants show a small phase delay under circadian entrainment. Using electrophoretic mobility shift assays (EMSA), we show that CRY is capable of binding single- and double-stranded DNA (ssDNA and dsDNA, respectively) and ssRNA and dsRNA. Whole-genome microarray experiments failed to identify substantive transcriptional regulatory activity of cry under our laboratory conditions.
机译:在植物和动物中,隐色染料充当感光器或生物钟组件。我们已经检查了丝状真菌Neurospora crassa的隐色染料,并证明Neurospora cry编码的DASH型隐色染料似乎能够结合黄素腺嘌呤二核苷酸(FAD)和亚甲基四氢叶酸(MTHF)。蓝光以 wc-1 依赖的方式强烈诱导 cry 转录本和CRY蛋白水平,并且 cry 转录本被昼夜调节,峰值丰度与 frq 相反。 cry 的删除或过表达都不会干扰自由运行的生物钟。然而, cry 破坏敲除突变体在昼夜节律的夹带下显示出小的相位延迟。使用电泳迁移率变动分析(EMSA),我们证明CRY能够结合单链和双链DNA(分别为ssDNA和dsDNA)以及ssRNA和dsRNA。在我们的实验室条件下,全基因组微阵列实验未能确定 cry 的实质转录调控活性。

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