INRAE, UR BIA, F-44316, Nantes, France.
INRAE, UR BIA, F-44316, Nantes, France; INRAE, BIBS Facility, F-44316, Nantes, France.
Carbohydr Res. 2022 Nov;521:108661. doi: 10.1016/j.carres.2022.108661. Epub 2022 Aug 27.
Structural elucidation of plant cell wall xyloglucan through the analysis of enzymatically produced fragments requires detailed knowledge of enzymes hydrolytic mechanism. In this note, the mode of action and cleavage site of commercial recombinant xyloglucanases (GH74, Paenibacillus sp.) was studied on native and fluorescent-tagged tamarind xyloglucan. In complement to information provided by the manufacturer, GH74 hydrolysis was shown dual endo/exo- and exo-processive with low affinity towards labelled reducing-ends. GH74 accommodated X/G in its subsite -1 and X/L in its subsite +1. Moreover, hydrolysis kinetic indicated a GH74 activity inhibition by excess products. These results will help for application of this enzyme in xyloglucans structural analysis or for processing cell walls.
通过分析酶促产生的片段对植物细胞壁木葡聚糖进行结构解析,需要详细了解酶的水解机制。在本注释中,研究了商业重组木葡聚糖酶(GH74、Paenibacillus sp.)在天然和荧光标记罗望子木葡聚糖上的作用模式和裂解位点。除了制造商提供的信息外,还表明 GH74 水解具有双重内切/外切和外切过程,对标记的还原末端亲和力低。GH74 在其亚位点-1 容纳 X/G,在其亚位点+1 容纳 X/L。此外,水解动力学表明过量产物抑制 GH74 活性。这些结果将有助于该酶在木葡聚糖结构分析或细胞壁加工中的应用。