Kumagai T, Yoshioka N, Oda Y
Biochim Biophys Acta. 1976 Jan 14;421(1):133-40. doi: 10.1016/0304-4165(76)90177-x.
Further studies have been made on the blue and near ultraviolet-reversible photoreaction in a cell-free system of the fungus Alternaria tomato, prepared by two-layer sucrose density gradient centrifugation. A light-minus-dark difference spectrum of the supernatant fraction showed a dip in the near ultraviolet region, mainly at 280 nm, when irradiated with near ultraviolet light which could not be reversed by following the initial irradiation with blue light. The difference spectrum of the dialyzed particulate fraction, located in the 68% sucrose band, showed a peak absorbance in the blue region, mainly at 400 nm, when irradiated with near ultraviolet light, and also could not be reversed by blue light. When the particulate fraction plus the supernatant fraction was irradiated with near ultraviolet light, the increment rate of peak absorbance in the blue region increased compared to that of the particulate fraction lacking the supernatant, and both peak absorbance in the blue region and the dip in the near ultraviolet region were reversed by irradiation with blue light following the application of near ultraviolet light. Thus, it was concluded that two photoresponsive systems are involved in blue and near ultraviolet reversible photoreaction on an intracellular particulate fraction.
利用两层蔗糖密度梯度离心法制备了番茄链格孢菌的无细胞体系,在此体系中对蓝色和近紫外光可逆光反应进行了进一步研究。上清液部分的光减暗差光谱显示,在用近紫外光照射时,近紫外区域出现一个低谷,主要在280nm处,随后用蓝光照射并不能使其逆转。位于68%蔗糖带的透析颗粒部分的差光谱显示,在用近紫外光照射时,蓝色区域出现一个峰值吸光度,主要在400nm处,同样也不能被蓝光逆转。当颗粒部分加上清液部分用近紫外光照射时,与缺少上清液的颗粒部分相比,蓝色区域峰值吸光度的增加速率提高,并且在用近紫外光照射后再用蓝光照射,蓝色区域的峰值吸光度和近紫外区域的低谷都能被逆转。因此,得出结论,在细胞内颗粒部分的蓝色和近紫外光可逆光反应中涉及两个光响应系统。