Park J K, Keyhani N O, Roseman S
Department of Biology and the McCollum-Pratt Institute, The Johns Hopkins University, Baltimore, Maryland 21218, USA.
J Biol Chem. 2000 Oct 20;275(42):33077-83. doi: 10.1074/jbc.M001042200.
The major product of bacterial chitinases is N,N'-diacetylchitobiose or (GlcNAc)(2). We have previously demonstrated that (GlcNAc)(2) is taken up unchanged by a specific permease in Vibrio furnissii (unlike Escherichia coli). It is generally held that marine Vibrios further metabolize cytoplasmic (GlcNAc)(2) by hydrolyzing it to two GlcNAcs (i.e. a "chitobiase "). Here we report instead that V. furnissii expresses a novel phosphorylase. The gene, chbP, was cloned into E. coli; the enzyme, ChbP, was purified to apparent homogeneity, and characterized kinetically. The DNA sequence indicates that chbP encodes an 89-kDa protein. The enzymatic reaction was characterized as follows. (GlcNAc)(2)+P(i) GlcNAc-alpha-1-P+GlcNAc K'(cq)=1.0+/-0.2 Reaction 1 The K(m) values for the four substrates were in the range 0.3-1 mm. p-Nitrophenyl-(GlcNAc)(2) was cleaved at 8.5% the rate of (GlcNAc)(2), and p-nitrophenyl (PNP)-GlcNAc was 36% as active as GlcNAc in the reverse direction. All other compounds tested displayed </=1% of the activity of the indicated substrates including: for phosphorolysis, higher chitin oliogsaccharides, (GlcNAc)(n), n = 3-5, cellobiose, PNP-GlcNAc, and PNP-(GlcNAc)(3); for synthesis, (GlcNAc)(n) (n = 2-5), glucose, etc. (GlcNAc)(2) is a major regulator of the chitin catabolic cascade. Conceivably GlcNAc-alpha-1-P plays a similar but different role in regulation.
细菌几丁质酶的主要产物是N,N'-二乙酰壳二糖或(GlcNAc)₂。我们之前已经证明,(GlcNAc)₂在弗氏弧菌中可通过一种特异性通透酶原样摄取(与大肠杆菌不同)。一般认为,海洋弧菌会通过将细胞质中的(GlcNAc)₂水解为两个GlcNAc(即“壳二糖酶”)来进一步代谢它。然而,我们在此报告弗氏弧菌表达一种新型磷酸化酶。该基因chbP被克隆到大肠杆菌中;ChbP酶被纯化至表观均一,并进行了动力学表征。DNA序列表明chbP编码一种89 kDa的蛋白质。酶促反应特征如下。(GlcNAc)₂ + P(i)⇌ GlcNAc-α-1-P + GlcNAc K'(cq)= 1.0 ± 0.2 反应1 四种底物的Kₘ值在0.3 - 1 mM范围内。对硝基苯基 - (GlcNAc)₂的裂解速率为(GlcNAc)₂的8.5%,对硝基苯基(PNP)-GlcNAc在反向反应中的活性为GlcNAc的36%。所有其他测试化合物的活性均≤所指示底物活性的1%,包括:对于磷酸解作用,更高的几丁质寡糖,(GlcNAc)ₙ,n = 3 - 5,纤维二糖,PNP - GlcNAc和PNP - (GlcNAc)₃;对于合成作用,(GlcNAc)ₙ(n = 2 - 5),葡萄糖等。(GlcNAc)₂是几丁质分解代谢级联反应的主要调节因子。可以想象,GlcNAc-α-1-P在调节中发挥类似但不同的作用。