Frost D J, Read S M, Drake R R, Haley B E, Wasserman B P
Department of Food Science, New Jersey Agricultural Experiment Station, Cook College, Rutgers University, New Brunswick 08903.
J Biol Chem. 1990 Feb 5;265(4):2162-7.
The photoaffinity probe 5-azidouridine 5'-[beta-32P]diphosphate glucose (5N3[32P]UDP-Glc) was used to identify a 57-kDa polypeptide as a strong candidate for the UDP-Glc-binding polypeptide of UDP-glucose: (1,3)-beta-glucan (callose) synthase from red beet (Beta vulgaris L.) storage tissue. Unlabeled 5N3UDP-Glc was a competitive inhibitor of callose synthase with a Ki of 310 microM. Callose synthase was purified from plasma membranes by a two-step solubilization with 3-[(3-cholamidopropyl)dimethylammonio]-1-propane-sulfonate, followed by product entrapment, and photoincorporation of radioactivity from 5N3[32P]UDP-Glc was used to identify UDP-Glc-binding polypeptides that copurified with callose synthase activity. Photoinsertion into the 57-kDa band was closely correlated with all catalytic properties examined. Photolabeling of the 57-kDa polypeptide was enriched upon purification of callose synthase by product entrapment, was abolished with increasing levels of unlabeled UDP-Glc, was dependent upon the presence of divalent cations, and the pH dependence of photolabeling correlated with the pH activity profile of callose synthase. In addition, photolabeling of the 57-kDa band did not occur after phospholipase treatment, which destroys enzyme activity. The extent of labeling of this polypeptide thus correlates closely with the activity of callose synthase under a wide variety of conditions. These results imply that the polypeptide at 57 kDa represents the substrate-binding and cation-regulated component of the callose synthase complex of higher plants.
光亲和探针5-叠氮尿苷5'-[β-32P]二磷酸葡萄糖(5N3[32P]UDP-Glc)被用于鉴定一种57 kDa的多肽,该多肽是来自红甜菜(Beta vulgaris L.)贮藏组织的UDP-葡萄糖:(1,3)-β-葡聚糖(胼胝质)合酶的UDP-Glc结合多肽的有力候选者。未标记的5N3UDP-Glc是胼胝质合酶的竞争性抑制剂,其Ki为310 μM。通过用3-[(3-胆酰胺丙基)二甲基铵]-1-丙烷磺酸盐进行两步增溶,随后截留产物,从质膜中纯化胼胝质合酶,并利用5N3[32P]UDP-Glc的放射性光掺入来鉴定与胼胝质合酶活性共纯化的UDP-Glc结合多肽。光插入到57 kDa条带与所检测的所有催化特性密切相关。通过截留产物纯化胼胝质合酶时,57 kDa多肽的光标记得到富集,随着未标记UDP-Glc水平的增加光标记被消除,光标记依赖于二价阳离子的存在,并且光标记的pH依赖性与胼胝质合酶的pH活性曲线相关。此外,磷脂酶处理破坏酶活性后,57 kDa条带的光标记未发生。因此,在多种条件下,该多肽的标记程度与胼胝质合酶的活性密切相关。这些结果表明,57 kDa的多肽代表高等植物胼胝质合酶复合物的底物结合和阳离子调节成分。