Bloemberg G V, Lagas R M, van Leeuwen S, Van der Marel G A, Van Boom J H, Lugtenberg B J, Spaink H P
Institute of Molecular Plant Sciences, Leiden University, The Netherlands.
Biochemistry. 1995 Oct 3;34(39):12712-20. doi: 10.1021/bi00039a030.
All lipo-chitin oligosaccharides identified from Rhizobium leguminosarum carry an O-acetyl moiety on C6 of the nonreducing terminal N-acetylglucosamine residue. Previously, we have shown that purified NodL protein, using acetyl-CoA as acetyl donor, in vitro acetylates N-acetylglucosamine, chitin oligosaccharides, and lipo-chitin oligosaccharides. In this paper, the enzymatic properties and substrate specificity of NodL protein were analyzed, using a spectrophotometric assay to quantify NodL transacetylating activity. NodL functions optimally under alkaline conditions. Transacetylating activity has a broad temperature optimum between 28 and 42 degrees C. NodL protein is stable for at least 15 min up to 48 degrees C. Glucosamine, chitosan oligosaccharides, terminally de-N-acetylated chitin derivatives, and cellopentaose were identified as acetyl-accepting substrates for NodL protein. Quantitative substrate specificity studies show that chitin derivatives with a free amino group on the nonreducing terminal residue are the preferred substrates of the NodL protein. Our results strongly indicate that the nonreducing terminally de-N-acetylated chitin oligosaccharides produced by the NodC and NodB enzymes are the in vivo acetyl-accepting substrates for NodL protein.
从豌豆根瘤菌中鉴定出的所有脂壳寡糖在非还原末端N-乙酰葡糖胺残基的C6位带有一个O-乙酰基部分。此前,我们已经表明,纯化的NodL蛋白以乙酰辅酶A作为乙酰供体,在体外可将N-乙酰葡糖胺、壳寡糖和脂壳寡糖乙酰化。在本文中,利用分光光度法测定NodL转乙酰化活性,分析了NodL蛋白的酶学性质和底物特异性。NodL在碱性条件下功能最佳。转乙酰化活性在28至42摄氏度之间有较宽的最适温度范围。NodL蛋白在高达48摄氏度的温度下至少15分钟内保持稳定。葡糖胺、壳寡糖、末端脱N-乙酰化的壳多糖衍生物和纤维五糖被确定为NodL蛋白的乙酰接受底物。定量底物特异性研究表明,在非还原末端残基上带有游离氨基的壳多糖衍生物是NodL蛋白的首选底物。我们的结果有力地表明,由NodC和NodB酶产生的非还原末端脱N-乙酰化壳寡糖是NodL蛋白在体内的乙酰接受底物。