Kamasaka Hiroshi, Sugimoto Kazuhisa, Takata Hiroki, Nishimura Takahisa, Kuriki Takashi
Biochemical Research Laboratory, Ezaki Glico Co., Ltd., Nishiyodogawa-ku, Osaka 555-8502, Japan.
Appl Environ Microbiol. 2002 Apr;68(4):1658-64. doi: 10.1128/AEM.68.4.1658-1664.2002.
The specificity of Bacillus stearothermophilus TRS40 neopullulanase toward amylose and amylopectin was analyzed. Although this neopullulanase completely hydrolyzed amylose to produce maltose as the main product, it scarcely hydrolyzed amylopectin. The molecular mass of amylopectin was decreased by only one order of magnitude, from approximately 10(8) to 10(7) Da. Furthermore, this neopullulanase selectively hydrolyzed amylose when starch was used as a substrate. This phenomenon, efficient hydrolysis of amylose but not amylopectin, was also observed with cyclomaltodextrinase from alkaliphilic Bacillus sp. strain A2-5a and maltogenic amylase from Bacillus licheniformis ATCC 27811. These three enzymes hydrolyzed cyclomaltodextrins and amylose much faster than pullulan. Other amylolytic enzymes, such as bacterial saccharifying alpha-amylase, bacterial liquefying alpha-amylase, beta-amylase, and neopullulanase from Bacillus megaterium, did not exhibit this distinct substrate specificity at all, i.e., the preference of amylose to amylopectin.
分析了嗜热脂肪芽孢杆菌TRS40新型普鲁兰酶对直链淀粉和支链淀粉的特异性。虽然这种新型普鲁兰酶能完全水解直链淀粉,以麦芽糖作为主要产物,但它几乎不水解支链淀粉。支链淀粉的分子量仅降低了一个数量级,从约10⁸Da降至10⁷Da。此外,当以淀粉为底物时,这种新型普鲁兰酶选择性地水解直链淀粉。嗜碱芽孢杆菌A2 - 5a菌株的环糊精酶和地衣芽孢杆菌ATCC 27811的产麦芽淀粉酶也观察到了这种现象,即对直链淀粉的高效水解而不是支链淀粉。这三种酶水解环糊精和直链淀粉的速度比水解普鲁兰快得多。其他淀粉分解酶,如细菌糖化α -淀粉酶、细菌液化α -淀粉酶、β -淀粉酶和巨大芽孢杆菌的新型普鲁兰酶,根本没有表现出这种明显的底物特异性,即对直链淀粉优于支链淀粉的偏好。