Baron O, Epel B L
Department of Botany, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, 69978 Israel.
Plant Physiol. 1983 Oct;73(2):471-4. doi: 10.1104/pp.73.2.471.
The differential sensitivities to permanganate oxidation of the red and far-red forms of native phytochrome from Avena sativa L. cv Mulaga (isolated as Pfr from red-irradiated tissue) and of partially degraded phytochrome (isolated as Pr from nonirradiated tissue) were determined. The far-red absorbing form of partially degraded phytochrome was 5 times more sensitive than its red-absorbing form, while both the far-red and red forms of native phytochrome exhibited identical sensitivity. The present data obtained with partially degraded phytochrome are in apparent agreement with the data and model of Hahn, Kang, and Song (1980 Biochem Biophys Res Commun 97: 1317-1323). Their model suggests that the chromophore of the red-absorbing form of phytochrome is buried in a hydrophobic crevice in the protein, while that of the far-red form is exposed. The data obtained with native phytochrome, however, are at variance with their model. Our data obtained with native phytochrome suggests that the chromophore of the red and the far-red absorbing forms of native phytochrome both are in a relatively protected environment and that only following partial proteolytic degradation of the phytochrome does the chromophore of its far-red form become relatively more exposed. The protective influence of the labile peptide could either be direct, because of its close physical proximity to the chromophore, or indirect, resulting in an alteration in chromophore-protein interaction.
测定了来自燕麦(品种Mulaga)的天然光敏色素的红色和远红光形式(从经红光照射的组织中分离为Pfr)以及部分降解的光敏色素(从未经照射的组织中分离为Pr)对高锰酸盐氧化的差异敏感性。部分降解的光敏色素的远红光吸收形式比其红光吸收形式敏感5倍,而天然光敏色素的远红光和红光形式表现出相同的敏感性。目前用部分降解的光敏色素获得的数据与Hahn、Kang和Song(1980年,《生物化学与生物物理学研究通讯》97: 1317 - 1323)的数据和模型明显一致。他们的模型表明,光敏色素红光吸收形式的发色团埋在蛋白质的疏水裂缝中,而远红光形式的发色团是暴露的。然而,用天然光敏色素获得的数据与他们的模型不一致。我们用天然光敏色素获得的数据表明,天然光敏色素的红光和远红光吸收形式的发色团都处于相对受保护的环境中,并且只有在光敏色素部分蛋白水解降解后,其远红光形式的发色团才会变得相对更暴露。不稳定肽的保护作用可能是直接的,因为它与发色团在物理上接近,或者是间接的,导致发色团 - 蛋白质相互作用的改变。