Instituto de Investigaciones Bioquimicas "Fundación Campomar," Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Patricias Argentinas 435, (1405) Buenos Aires, Argentina.
Plant Physiol. 1992 Aug;99(4):1342-7. doi: 10.1104/pp.99.4.1342.
Potato (Solanum tuberosum L.) tuber UDP-glucose:protein transglucosylase (UPTG) (EC 2.4.1.112) is involved in the first of a two-step mechanism proposed for protein-bound alpha-glucan synthesis by catalyzing the covalent attachment of a single glucose residue to an acceptor protein. The resulting glucosylated 38-kilodalton polypeptide would then serve as a primer for enzymic glucan chain elongation during the second step. In the present report, we describe the fast protein liquid chromatography purification of UPTG from a membrane pellet of potato tuber. An apparently close association of UPTG, phosphorylase, and starch synthase was observed under native conditions during different purification steps. Enrichment of a 38-kilodalton polypeptide was found throughout enzyme purification. It is now shown that the purified UPTG, with an apparent molecular mass of 38 kilodaltons, undergoes self-glucosylation in a UDP-glucose- and Mn(2+)-dependent reaction. Therefore, it is concluded that UPTG is the enzyme and at the same time the priming protein required for the biogenesis of protein-bound alpha-glucan in potato tuber.
马铃薯(Solanum tuberosum L.)块茎 UDP-葡萄糖:蛋白葡糖基转移酶(UPTG)(EC 2.4.1.112)参与了两步机制的第一步,该机制被提议用于通过催化单个葡萄糖残基与受体蛋白的共价连接来合成蛋白结合的α-葡聚糖。由此产生的葡糖基化 38 千道尔顿多肽将在第二步中作为酶促葡聚糖链延伸的引物。在本报告中,我们描述了马铃薯块茎膜颗粒中 UPTG 的快速蛋白质液流纯化。在不同的纯化步骤中,在天然条件下观察到 UPTG、磷酸化酶和淀粉合酶之间的密切关联。在整个酶纯化过程中发现了 38 千道尔顿多肽的富集。现在已经表明,纯化的 UPTG 具有 38 千道尔顿的表观分子量,在 UDP-葡萄糖和 Mn2+依赖性反应中进行自我葡糖基化。因此,可以得出结论,UPTG 是马铃薯块茎中蛋白结合α-葡聚糖生物合成所需的酶和引物蛋白。