Kluskens Leon D, van Alebeek Gert-Jan W M, Voragen Alphons G J, de Vos Willem M, van der Oost John
Laboratory of Microbiology, Wageningen University, Hesselink van Suchtelenweg 4, NL-6703, CT, Wageningen, The Netherlands.
Biochem J. 2003 Mar 1;370(Pt 2):651-9. doi: 10.1042/BJ20021595.
The ability of the hyperthermophilic bacterium Thermotoga maritima to grow on pectin as a sole carbon source coincides with the secretion of a pectate lyase A (PelA) in the extracellular medium. The pel A gene of T. maritima was functionally expressed in Escherichia coli as the first heterologously produced thermophilic pectinase, and purified to homogeneity. Gel filtration indicated that the native form of PelA is tetrameric. Highest activity (422 units/mg, with a K(m) of 0.06 mM) was demonstrated on polygalacturonic acid (PGA), whereas pectins with an increasing degree of methylation were degraded at a decreasing rate. In the tradition of pectate lyases, PelA demonstrated full dependency on Ca(2+) for stability and activity. The enzyme is highly thermoactive and thermostable, operating optimally at 90 degrees C and pH 9.0, with a half-life for thermal inactivation of almost 2 h at 95 degrees C, and an apparent melting temperature of 102.5 degrees C. Detailed characterization of the product formation with PGA indicated that PelA has a unique eliminative exo-cleavage pattern liberating unsaturated trigalacturonate as the major product, in contrast with unsaturated digalacturonate for other exopectate lyases known. The unique exo-acting mode of action was supported by progression profiles of PelA on oligogalacturonides (degree of polymerization, 3-8) and the examination of the bond cleavage frequencies.
嗜热栖热菌(Thermotoga maritima)能够以果胶作为唯一碳源生长,这与胞外培养基中果胶酸裂解酶A(PelA)的分泌有关。嗜热栖热菌的pel A基因在大肠杆菌中实现了功能表达,成为首个异源生产的嗜热果胶酶,并纯化至同质。凝胶过滤表明,PelA的天然形式为四聚体。在聚半乳糖醛酸(PGA)上表现出最高活性(422单位/毫克,K(m)为0.06毫摩尔),而随着甲基化程度增加的果胶,其降解速率逐渐降低。按照果胶酸裂解酶的传统特性,PelA的稳定性和活性完全依赖于Ca(2+)。该酶具有高度的热活性和热稳定性,在90℃和pH 9.0时活性最佳,在95℃下热失活的半衰期近2小时,表观解链温度为102.5℃。对PGA产物形成的详细表征表明,与其他已知的外切果胶酸裂解酶生成不饱和二半乳糖醛酸不同,PelA具有独特的消除性外切裂解模式,主要产物为不饱和三半乳糖醛酸。PelA对寡聚半乳糖醛酸(聚合度为3 - 8)的作用进程曲线以及对键断裂频率的检测,支持了其独特的外切作用模式。