Li L B, Zou Y P, Yu L, Yu C A
Department of Biochemistry, OAES, Oklahoma State University, Stillwater 74078.
Biochim Biophys Acta. 1991 Mar 29;1057(2):215-22. doi: 10.1016/s0005-2728(05)80104-5.
The catalytic role of subunit IV, the Mr 17,000 protein, in the chloroplast cytochrome b6-f complex was established through trypsinolysis of the complex under controlled conditions. When purified chloroplast cytochrome b6-f complex, 1 mg/ml, in 50 mM Tris-succinate buffer (pH 7.0) containing 1% sodium cholate and 10% glycerol is treated with 80 micrograms of trypsin at room temperature for various lengths of time, the activity of the cytochrome b6-f complex decreases as the incubation time increases. A maximal inactivation of 80% is reached at 7 min of incubation. The trypsin inactivation is accompanied by the destruction of the proton translocation activity of the complex. No alteration of absorption and EPR spectral properties was observed in the trypsin-inactivated complex. Subunit IV is the only subunit in the cytochrome b6-f complex that is digested by trypsin, and the degree of digestion correlates with the decrease of electron transfer activity. The binding of azido-Q to subunit IV of the complex decreases as the extent of inactivation of the cytochrome b6-f complex by trypsin increases. The residue molecular mass of trypsin cleaved subunit IV is about 14 kDa, suggesting that the cleavage site is at lysine 119 or arginine 125 or 126. When the thylakoid membrane was assayed for cytochrome b6-f complex activity, very little activity was observed; and the activity was not sensitive to trypsinolysis. Upon sonication, activity and sensitivity to trypsinolysis was greatly increased, suggesting that subunit IV protrudes from the lumen side of the membrane.
通过在可控条件下对叶绿体细胞色素b6-f复合物进行胰蛋白酶消化,确定了Mr 17,000蛋白亚基IV在叶绿体细胞色素b6-f复合物中的催化作用。当将浓度为1 mg/ml的纯化叶绿体细胞色素b6-f复合物置于含1%胆酸钠和10%甘油的50 mM Tris-琥珀酸缓冲液(pH 7.0)中,在室温下用80微克胰蛋白酶处理不同时间时,细胞色素b6-f复合物的活性随孵育时间的增加而降低。孵育7分钟时达到最大失活率80%。胰蛋白酶失活伴随着复合物质子转运活性的破坏。在胰蛋白酶失活的复合物中未观察到吸收光谱和电子顺磁共振光谱特性的改变。亚基IV是细胞色素b6-f复合物中唯一被胰蛋白酶消化的亚基,消化程度与电子传递活性的降低相关。随着细胞色素b6-f复合物被胰蛋白酶失活程度的增加,叠氮-Q与复合物亚基IV的结合减少。胰蛋白酶切割后的亚基IV的残留分子量约为14 kDa,表明切割位点在赖氨酸119或精氨酸125或126处。当检测类囊体膜的细胞色素b6-f复合物活性时,观察到的活性非常低;并且该活性对胰蛋白酶消化不敏感。超声处理后,活性和对胰蛋白酶消化的敏感性大大增加,表明亚基IV从膜的腔侧突出。