Department of Biology, Laboratory of Plant Growth and Development, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerpen, Belgium.
J Exp Bot. 2011 Jan;62(1):261-71. doi: 10.1093/jxb/erq263. Epub 2010 Aug 22.
Xyloglucan endotransglucosylase/hydrolases (XTHs) are cell wall enzymes that are able to graft xyloglucan chains to oligosaccharides or to other available xyloglucan chains and/or to hydrolyse xyloglucan chains. As they are involved in the modification of the load-bearing cell-wall components, they are believed to be very important in the regulation of growth and development. Given the large number (33) of XTH genes in Arabidopsis and the overlapping expression patterns, specific enzymic properties may be expected. Five predominantly root-expressed Arabidopsis thaliana XTHs belonging to subgroup I/II were analysed here. These represent two sets of closely related genes: AtXTH12 and 13 on the one hand (trichoblast-enriched) and AtXTH17, 18, and 19 on the other (expressed in nearly all cell types in the root). They were all recombinantly produced in the yeast Pichia pastoris and partially purified by ammonium sulphate precipitation before they were subsequently all subjected to a series of identical in vitro tests. The kinetic properties of purified AtXTH13 were investigated in greater detail to rule out interference with the assays by contaminating yeast proteins. All five proteins were found to exhibit only the endotransglucosylase (XET; EC 2.4.1.207) activity towards xyloglucan and non-detectable endohydrolytic (XEH; EC 3.2.1.151) activity. Their endotransglucosylase activity was preferentially directed towards xyloglucan and, in some cases, water-soluble cellulose acetate, rather than to mixed-linkage β-glucan. Isoforms differed in optimum pH (5.0-7.5), in temperature dependence and in acceptor substrate preferences.
木葡聚糖内转葡糖苷酶/水解酶(XTHs)是能够将木葡聚糖链接枝到寡糖或其他可用的木葡聚糖链上,或水解木葡聚糖链的细胞壁酶。由于它们参与了承载细胞壁成分的修饰,因此被认为在生长和发育的调控中非常重要。鉴于拟南芥中有 33 个 XTH 基因,并且表达模式重叠,预计会有特定的酶学特性。这里分析了属于 I/II 亚组的 5 种主要在根中表达的拟南芥 XTH。它们代表了两组密切相关的基因:一方面是 AtXTH12 和 13(毛原细胞富集),另一方面是 AtXTH17、18 和 19(在根中的几乎所有细胞类型中表达)。这些基因都在毕赤酵母 Pichia pastoris 中重组产生,并通过硫酸铵沉淀进行部分纯化,然后对所有基因进行了一系列相同的体外测试。为了排除酵母蛋白污染对测定的干扰,更详细地研究了纯化的 AtXTH13 的动力学特性。发现所有 5 种蛋白仅对木葡聚糖表现出内切葡聚糖酶(XET;EC 2.4.1.207)活性,而对内切水解酶(XEH;EC 3.2.1.151)活性则无法检测到。它们的内切葡聚糖酶活性优先指向木葡聚糖,在某些情况下,也指向水溶性醋酸纤维素,而不是混合连接β-葡聚糖。同工酶在最适 pH(5.0-7.5)、温度依赖性和受体底物偏好性方面存在差异。