Kobayashi T, Hatada Y, Higaki N, Lusterio D D, Ozawa T, Koike K, Kawai S, Ito S
Tochigi Research Laboratories of Kao Corporation 2606 Akabane, Ichikai, Haga, Tochigi, 321-3497, Japan.
Biochim Biophys Acta. 1999 Apr 19;1427(2):145-54. doi: 10.1016/s0304-4165(99)00017-3.
A high-alkaline pectate lyase (pectate trans-eliminase, EC 4.2.2.2.) from alkaliphilic Bacillus sp. strain KSM-P7, designated Pel-7, was purified to homogeneity. The purified Pel-7 had a molecular mass of approximately 33 kDa as determined by SDS-polyacrylamide gel electrophoresis. The isoelectric point was close to or higher than pH 10.5. In the presence of Ca2+ ions, Pel-7 trans-eliminated polygalacturonate in random manner to generate oligogalacturonides; it exhibited optimal activity at pH 10.5 and around at 60 to 65 degrees C in glycine-NaOH buffer. Mn2+ and Sr2+ ions can serve as cofactors at almost the same level of Ca2+ ions. It also exhibited a protopectinase-like activity, liberating soluble pectin and/or oligogalacturonides from cotton fibers. The pel gene was cloned and sequenced, and the deduced amino acid sequence of mature Pel-7 (302 amino acids, 33, 355 Da) showed some conserved regions in Pel superfamily, although homology to amino acid sequences of known Pels with 27 to 32% identity. Furthermore, Pel-7 appears to have similar core structure of parallel beta-helix and active site topology with other Pels as revealed by secondary structure prediction in the Pel proteins. These results suggest that Pel-7 is basically grouped into Pel superfamily although the enzymatic and molecular properties are different.
从嗜碱芽孢杆菌属菌株KSM-P7中纯化出一种高碱性果胶酸裂解酶(果胶酸反式消除酶,EC 4.2.2.2.),命名为Pel-7。通过SDS-聚丙烯酰胺凝胶电泳测定,纯化后的Pel-7分子量约为33 kDa。其等电点接近或高于pH 10.5。在Ca2+离子存在下,Pel-7以随机方式反式消除聚半乳糖醛酸生成低聚半乳糖醛酸酯;在甘氨酸-NaOH缓冲液中,它在pH 10.5以及60至65摄氏度左右表现出最佳活性。Mn2+和Sr2+离子可作为辅因子,其作用水平与Ca2+离子几乎相同。它还表现出类似原果胶酶的活性,能从棉纤维中释放出可溶性果胶和/或低聚半乳糖醛酸酯。对pel基因进行了克隆和测序,推导的成熟Pel-7氨基酸序列(302个氨基酸,33355 Da)在Pel超家族中显示出一些保守区域,尽管与已知果胶酸裂解酶的氨基酸序列同源性为27%至32%。此外,通过对Pel蛋白的二级结构预测发现,Pel-7似乎与其他果胶酸裂解酶具有相似的平行β-螺旋核心结构和活性位点拓扑结构。这些结果表明,尽管Pel-7的酶学和分子特性不同,但它基本属于Pel超家族。