Yuan S, Wu Y, Cosgrove D J
Department of Biology, 208 Mueller Lab, Pennsylvania State University, University Park, Pennsylvania 16802, USA.
Plant Physiol. 2001 Sep;127(1):324-33. doi: 10.1104/pp.127.1.324.
We have identified a wall hydrolytic enzyme from Trichoderma reesei with potent ability to induce extension of heat-inactivated type I cell walls. It is a small (23-kD) endo-1,4-beta-glucanase (Cel12A) belonging to glycoside hydrolase family 12. Extension of heat-inactivated walls from cucumber (Cucumis sativus cv Burpee Pickler) hypocotyls was induced by Cel12A after a distinct lag time and was accompanied by a large increase in wall plasticity and elasticity. Cel12A also increased the rate of stress relaxation of isolated walls at very short times (<200 ms; equivalent to reducing t(0), a parameter that estimates the minimum relaxation time). Similar changes in wall plasticity and elasticity were observed in wheat (Triticum aestivum cv Pennmore Winter) coleoptile (type II) walls, which showed only a negligible extension in response to Cel12A treatment. Thus, Cel12A modifies both type I and II walls, but substantial extension is found only in type I walls. Cel12A has strong endo-glucanase activity against xyloglucan and (1-->3,1-->4)-beta-glucan, but did not exhibit endo-xylanase, endo-mannase, or endo-galactanase activities. In terms of kinetics of action and effects on wall rheology, wall loosening by Cel12A differs qualitatively from the action by expansins, which induce wall extension by a non-hydrolytic polymer creep mechanism. The action by Cel12A mimics some of the changes in wall rheology found after auxin-induced growth. The strategy used here to identify Cel12A could be used to identify analogous plant enzymes that cause auxin-induced changes in cell wall rheology.
我们从里氏木霉中鉴定出一种细胞壁水解酶,它具有强大的能力来诱导热失活的I型细胞壁伸展。它是一种小分子量(23-kD)的内切-1,4-β-葡聚糖酶(Cel12A),属于糖苷水解酶家族12。黄瓜(Cucumis sativus cv Burpee Pickler)下胚轴热失活细胞壁的伸展在一段明显的延迟时间后由Cel12A诱导,并伴随着细胞壁可塑性和弹性的大幅增加。Cel12A还在非常短的时间内(<200毫秒;相当于缩短t(0),一个估计最小松弛时间的参数)提高了分离细胞壁的应力松弛速率。在小麦(Triticum aestivum cv Pennmore Winter)胚芽鞘(II型)细胞壁中也观察到了类似的细胞壁可塑性和弹性变化,其对Cel12A处理的反应仅显示出可忽略不计的伸展。因此,Cel12A可修饰I型和II型细胞壁,但仅在I型细胞壁中发现大量伸展。Cel12A对木葡聚糖和(1→3,1→4)-β-葡聚糖具有很强的内切葡聚糖酶活性,但不表现出内切木聚糖酶、内切甘露聚糖酶或内切半乳聚糖酶活性。就作用动力学和对细胞壁流变学的影响而言,Cel12A引起的细胞壁松弛在性质上不同于扩张蛋白的作用,扩张蛋白通过非水解性聚合物蠕变机制诱导细胞壁伸展。Cel12A的作用模拟了生长素诱导生长后细胞壁流变学的一些变化。这里用于鉴定Cel12A的策略可用于鉴定引起生长素诱导的细胞壁流变学变化的类似植物酶。