Onajobi F D, Cole C V, Ross C
Department of Agronomy and Agricultural Research Service, United States Department of Agriculture and Department of Botany and Plant Pathology, Colorado State University, Fort Collins, Colorado 80521.
Plant Physiol. 1973 Dec;52(6):580-4. doi: 10.1104/pp.52.6.580.
ATP-sulfurylase (ATP-sulfate adenyltransferase, EC 2.7.7.4) was found in nonparticulate fractions of both roots and leaves of Zea mays L. seedlings using two detection methods. Addition of exogenous pyrophosphatase was essential for maximum rates of conversion of (35)SO(4) (2-) to labeled adenosine phosphosulfate in unpurified root extracts, but not in unpurified leaf extracts. In the presence of exogenous pyrophosphatase, the enzyme from roots exhibited specific activities as high as those obtained with the leaf enzyme. The root enzyme was purified 33-fold by centrifugation and column chromatography procedures. Its molecular weight obtained by Sephadex gel filtration was about 42,000. Its Km for pyrophosphate was 7 mum, while for adenosine phosphosulfate, the Km was 1.35 mum. None of the enzyme fractions studied converted adenosine phosphosulfate into detectable amounts of 3'-phosphoadenosine-5'-phosphosulfate. ATP-sulfurylase was also found in roots of corn seedlings grown aseptically. The data suggest that at least the first reaction in sulfate reduction might proceed as effectively in roots as in shoots.
利用两种检测方法,在玉米幼苗的根和叶的非颗粒部分中发现了ATP硫酸化酶(ATP硫酸腺苷转移酶,EC 2.7.7.4)。在未纯化的根提取物中,添加外源焦磷酸酶对于将(35)SO(4)(2-)转化为标记的腺苷磷酸硫酸酯的最大转化率至关重要,但在未纯化的叶提取物中则不然。在外源焦磷酸酶存在下,来自根的酶表现出与叶酶相当的比活性。通过离心和柱色谱法将根酶纯化了33倍。通过Sephadex凝胶过滤获得的其分子量约为42,000。其对焦磷酸的Km为7μm,而对腺苷磷酸硫酸酯的Km为1.35μm。所研究的酶组分均未将腺苷磷酸硫酸酯转化为可检测量的3'-磷酸腺苷-5'-磷酸硫酸酯。在无菌培养的玉米幼苗的根中也发现了ATP硫酸化酶。数据表明,至少硫酸盐还原的第一步反应在根中可能与在地上部分一样有效地进行。