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Chemical magnetoreception: bird cryptochrome 1a is excited by blue light and forms long-lived radical-pairs.

机译:化学磁感受:鸟隐花色素1a被蓝光激发并形成长寿命的自由基对。

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摘要

Cryptochromes (Cry) have been suggested to form the basis of light-dependent magnetic compass orientation in birds. However, to function as magnetic compass sensors, the cryptochromes of migratory birds must possess a number of key biophysical characteristics. Most importantly, absorption of blue light must produce radical pairs with lifetimes longer than about a microsecond. Cryptochrome 1a (gwCry1a) and the photolyase-homology-region of Cry1 (gwCry1-PHR) from the migratory garden warbler were recombinantly expressed and purified from a baculovirus/Sf9 cell expression system. Transient absorption measurements show that these flavoproteins are indeed excited by light in the blue spectral range leading to the formation of radicals with millisecond lifetimes. These biophysical characteristics suggest that gwCry1a is ideally suited as a primary light-mediated, radical-pair-based magnetic compass receptor.
机译:已经提出隐花色素(Cry)构成鸟类中与光有关的磁罗盘方向的基础。但是,要用作磁罗盘传感器,候鸟的隐色必须具有许多关键的生物物理特征。最重要的是,吸收蓝光必须产生寿命超过约一微秒的自由基对。从杆状病毒/ Sf9细胞表达系统中重组表达并纯化了来自迁徙花园莺的隐花色素1a(gwCry1a)和Cry1的光裂解酶同源区域(gwCry1-PHR)。瞬态吸收测量结果表明,这些黄素蛋白的确被蓝光谱范围内的光激发,导致形成了毫秒级的自由基。这些生物物理特征表明,gwCry1a非常适合作为主要的光介导的基于自由基对的磁罗盘受体。

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