Salvucci M E, Rajagopalan K, Sievert G, Haley B E, Watt D S
U.S. Department of Agriculture, University of Kentucky, Lexington 40546.
J Biol Chem. 1993 Jul 5;268(19):14239-44.
The phosphate-binding domain of the ATP-binding site of tobacco Rubisco (ribulose-1,5-bisphosphate carboxylase/oxygenase) activase was elucidated by photo-affinity labeling with a monoanhydride of ADP with N-(4-(benzoyl)phenylmethyl)phosphoramide ([gamma-32P]ATP gamma BP). Covalent incorporation of [gamma-32P]ATP gamma BP into the 42-kDa Rubisco activase subunit was dependent upon irradiation with ultraviolet light. Photolabelling of Rubisco activase with ATP gamma BP exhibited saturation kinetics; the apparent Kd for photolabeling was 5 microM. Two lines of evidence showed that ATP gamma BP modified Rubisco activase at the ATP-binding domain. First, physiological concentrations of ATP and ADP afforded complete protection against photolabeling of Rubisco activase by ATP gamma BP. Second, photolysis of Rubisco activase in the presence of ATP gamma BP decreased both the ATPase and the Rubisco activating activities. Inactivation of enzyme activity was dependent on ATP gamma BP concentration and could be prevented by including ADP during photolabeling. The region of Rubisco activase that was modified by ATP gamma BP was identified by isolating photolabeled peptides. Sequence analysis showed that ATP gamma BP modified Rubisco activase in two distinct regions; one region, S117-A136, is adjacent to the P-loop and the other region, V223-T234, exhibits homology to a region of adenylate kinase that ligates the essential metal ion. Photolabeling of these two regions of Rubisco activase was consistent with modification of the ATP gamma-phosphate-binding domain of Rubisco activase with ATP gamma BP.
通过用ADP与N-(4-(苯甲酰基)苯基甲基)磷酰胺的单酐([γ-32P]ATPγBP)进行光亲和标记,阐明了烟草核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)活化酶ATP结合位点的磷酸结合结构域。[γ-32P]ATPγBP共价掺入42 kDa的Rubisco活化酶亚基依赖于紫外线照射。用ATPγBP对Rubisco活化酶进行光标记表现出饱和动力学;光标记的表观解离常数(Kd)为5 μM。两条证据表明ATPγBP在ATP结合结构域修饰了Rubisco活化酶。首先,生理浓度的ATP和ADP能完全保护Rubisco活化酶不被ATPγBP光标记。其次,在ATPγBP存在下对Rubisco活化酶进行光解会降低ATP酶活性和Rubisco活化活性。酶活性的失活取决于ATPγBP的浓度,并且在光标记过程中加入ADP可以防止失活。通过分离光标记的肽段鉴定了被ATPγBP修饰的Rubisco活化酶区域。序列分析表明ATPγBP在两个不同区域修饰了Rubisco活化酶;一个区域,S117 - A136,与P环相邻,另一个区域,V223 - T234,与连接必需金属离子的腺苷酸激酶区域具有同源性。Rubisco活化酶这两个区域的光标记与ATPγBP对Rubisco活化酶的ATPγ - 磷酸结合结构域的修饰一致。