Quezada-Calvillo R, Markowitz A J, Traber P G, Underdown B J
Department of Pathology, McMaster University, Hamilton, Ontario, Canada.
Am J Physiol. 1993 Dec;265(6 Pt 1):G1141-9. doi: 10.1152/ajpgi.1993.265.6.G1141.
This study was directed to determine the extent of variability in structure or expression of intestinal disaccharidase [gamma-glucoamylase (gamma-GA), sucrase-isomaltase (SI), and lactase] between different strains of mice. Reduced levels of sucrase activity (approximately 20 U/g of protein) were observed in three strains of mice belonging to the CBA/Ca lineage. Four other strains of mice analyzed exhibited higher levels of sucrase activity (approximately 50 U/g of protein). Decreased levels of sucrase in CBA/Ca mice were not associated with decreased levels of activity associated with the isomaltase subunit or with decreased levels of SI mRNA expression. High-performance liquid chromatographic gel filtration, heat inactivation, and kinetic analysis indicated that the differences between strains in sucrase activity might be attributed to structural differences in the sucrase subunit of the SI complex, thus rendering it more susceptible to cleavage and inactivation. However, no differences in kinetic properties of the sucrase subunit were observed between strains. Murine gamma-GA was found to account for a greater proportion of maltase activity (approximately 70%) than that observed in other species (i.e., approximately 20%). In addition, CBA/Ca mice were found to be deficient in intestinal maltase activity (approximately 60 U/g) compared with the other strains studied (approximately 300 U/g).
本研究旨在确定不同品系小鼠肠道双糖酶(γ-葡糖淀粉酶(γ-GA)、蔗糖酶-异麦芽糖酶(SI)和乳糖酶)结构或表达的变异程度。在属于CBA/Ca系的三个品系小鼠中观察到蔗糖酶活性水平降低(约20 U/g蛋白质)。分析的其他四个品系小鼠表现出较高的蔗糖酶活性水平(约50 U/g蛋白质)。CBA/Ca小鼠中蔗糖酶水平降低与异麦芽糖酶亚基相关活性水平降低或SI mRNA表达水平降低无关。高效液相色谱凝胶过滤、热失活和动力学分析表明,品系间蔗糖酶活性的差异可能归因于SI复合物中蔗糖酶亚基的结构差异,从而使其更易被裂解和失活。然而,品系间未观察到蔗糖酶亚基动力学特性的差异。发现小鼠γ-GA在麦芽糖酶活性中所占比例(约70%)高于其他物种(即约20%)。此外,与其他研究品系(约300 U/g)相比,发现CBA/Ca小鼠肠道麦芽糖酶活性不足(约60 U/g)。