Takasuka Taichi E, Acheson Justin F, Bianchetti Christopher M, Prom Ben M, Bergeman Lai F, Book Adam J, Currie Cameron R, Fox Brian G
Great Lakes Bioenergy Research Center, University of Wisconsin -Madison, Madison, Wisconsin, United States of America; Department of Biochemistry, University of Wisconsin -Madison, Madison, Wisconsin, United States of America.
Department of Biochemistry, University of Wisconsin -Madison, Madison, Wisconsin, United States of America.
PLoS One. 2014 Apr 7;9(4):e94166. doi: 10.1371/journal.pone.0094166. eCollection 2014.
β-Mannanase SACTE_2347 from cellulolytic Streptomyces sp. SirexAA-E is abundantly secreted into the culture medium during growth on cellulosic materials. The enzyme is composed of domains from the glycoside hydrolase family 5 (GH5), fibronectin type-III (Fn3), and carbohydrate binding module family 2 (CBM2). After secretion, the enzyme is proteolyzed into three different, catalytically active variants with masses of 53, 42 and 34 kDa corresponding to the intact protein, loss of the CBM2 domain, or loss of both the Fn3 and CBM2 domains. The three variants had identical N-termini starting with Ala51, and the positions of specific proteolytic reactions in the linker sequences separating the three domains were identified. To conduct biochemical and structural characterizations, the natural proteolytic variants were reproduced by cloning and heterologously expressed in Escherichia coli. Each SACTE_2347 variant hydrolyzed only β-1,4 mannosidic linkages, and also reacted with pure mannans containing partial galactosyl- and/or glucosyl substitutions. Examination of the X-ray crystal structure of the GH5 domain of SACTE_2347 suggests that two loops adjacent to the active site channel, which have differences in position and length relative to other closely related mannanases, play a role in producing the observed substrate selectivity.
来自纤维素分解链霉菌SirexAA-E的β-甘露聚糖酶SACTE_2347在以纤维素材料为生长底物时大量分泌到培养基中。该酶由糖苷水解酶家族5(GH5)、纤连蛋白III型(Fn3)和碳水化合物结合模块家族2(CBM2)的结构域组成。分泌后,该酶被蛋白酶解为三种不同的、具有催化活性的变体,分子量分别为53 kDa、42 kDa和34 kDa,分别对应完整蛋白、缺失CBM2结构域或同时缺失Fn3和CBM2结构域。这三种变体具有相同的以Ala51起始的N端,并确定了分隔这三个结构域的连接序列中特定蛋白水解反应的位置。为了进行生化和结构表征,通过克隆天然蛋白水解变体并在大肠杆菌中进行异源表达来重现它们。每个SACTE_2347变体仅水解β-1,4甘露糖苷键,并且还与含有部分半乳糖基和/或葡萄糖基取代的纯甘露聚糖反应。对SACTE_2347的GH5结构域的X射线晶体结构研究表明,与活性位点通道相邻的两个环,相对于其他密切相关的甘露聚糖酶,它们在位置和长度上存在差异,这在产生观察到的底物选择性中起作用。