Wu S H, Lagarias J C
Section of Molecular and Cellular Biology, University of California, Davis 95616, USA.
Proc Natl Acad Sci U S A. 1996 Aug 20;93(17):8989-94. doi: 10.1073/pnas.93.17.8989.
Induction of the expression of an algal phytochrome cDNA in the methylotrophic yeast Pichia pastoris led to time-dependent formation of photoactive holophytochrome without the addition of exogenous bilins. Both in vivo and in vitro difference spectra of this phytochromic species are very similar to those of higher plant phytochrome A, supporting the conclusion that this species possesses a phytochromobilin prosthetic group. Zinc blot analyses confirm that a bilin chromophore is covalently bound to the algal phytochrome apoprotein. The hypothesis that P. pastoris contains phytochromobilin synthase, the enzyme that converts biliverdin IX alpha to phytochromobilin, was also addressed in this study. Soluble extracts from P. pastoris were able to convert biliverdin to a bilin pigment, which produced a native difference spectrum upon assembly with oat apophytochrome A. HPLC analyses confirm that biliverdin is converted to both 3E- and 3Z-isomers of phytochromobilin. These investigations demonstrate that the ability to synthesize phytochromobilin is not restricted to photosynthetic organisms and support the hypothesis of a more widespread distribution of the phytochrome photoreceptor.
在甲基营养型酵母毕赤酵母中诱导藻类光敏色素cDNA的表达,在不添加外源胆色素的情况下,导致了光活性全光敏色素的时间依赖性形成。该光敏色素物种的体内和体外差异光谱与高等植物光敏色素A的差异光谱非常相似,支持了该物种具有藻胆素辅基的结论。锌印迹分析证实,胆色素发色团与藻类光敏色素脱辅基蛋白共价结合。本研究还探讨了毕赤酵母中含有藻胆素合酶(将胆绿素IXα转化为藻胆素的酶)的假说。毕赤酵母的可溶性提取物能够将胆绿素转化为一种胆色素色素,该色素与燕麦脱辅基光敏色素A组装后产生天然差异光谱。高效液相色谱分析证实,胆绿素被转化为藻胆素的3E-和3Z-异构体。这些研究表明,合成藻胆素的能力并不局限于光合生物,并支持了光敏色素光受体分布更广泛的假说。