Fisher David I, Cartwright Jared L, Harashima Hideyoshi, Kamiya Hiroyuki, McLennan Alexander G
School of Biological Sciences, Biosciences Building, University of Liverpool, P,O, Box 147, Liverpool L69 7ZB, UK.
BMC Biochem. 2004 May 17;5:7. doi: 10.1186/1471-2091-5-7.
Nudix hydrolases form a protein family whose function is to hydrolyse intracellular nucleotides and so regulate their levels and eliminate potentially toxic derivatives. The genome of the radioresistant bacterium Deinococcus radiodurans encodes 25 nudix hydrolases, an unexpectedly large number. These may contribute to radioresistance by removing mutagenic oxidised and otherwise damaged nucleotides. Characterisation of these hydrolases is necessary to understand the reason for their presence. Here, we report the cloning and characterisation of the DR0975 gene product, a nudix hydrolase that appears to be unique to this organism.
The DR0975 gene was cloned and expressed as a 20 kDa histidine-tagged recombinant product in Escherichia coli. Substrate analysis of the purified enzyme showed it to act primarily as a phosphatase with a marked preference for (deoxy)nucleoside 5'-diphosphates (dGDP > ADP > dADP > GDP > dTDP > UDP > dCDP > CDP). Km for dGDP was 110 microM and kcat was 0.18 s-1 under optimal assay conditions (pH 9.4, 7.5 mM Mg2+). 8-Hydroxy-2'-deoxyguanosine 5'-diphosphate (8-OH-dGDP) was also a substrate with a Km of 170 microM and kcat of 0.13 s-1. Thus, DR0975 showed no preference for 8-OH-dGDP over dGDP. Limited pyrophosphatase activity was also observed with NADH and some (di)adenosine polyphosphates but no other substrates. Expression of the DR0975 gene was undetectable in logarithmic phase cells but was induced at least 30-fold in stationary phase. Superoxide, but not peroxide, stress and slow, but not rapid, dehydration both caused a slight induction of the DR0975 gene.
Nucleotide substrates for nudix hydrolases conform to the structure NDP-X, where X can be one of several moieties. Thus, a preference for (d)NDPs themselves is most unusual. The lack of preference for 8-OH-dGDP over dGDP as a substrate combined with the induction in stationary phase, but not by peroxide or superoxide, suggests that the function of DR09075 may be to assist in the recycling of nucleotides under the very different metabolic requirements of stationary phase. Thus, if DR0975 does contribute to radiation resistance, this contribution may be indirect.
Nudix水解酶构成一个蛋白质家族,其功能是水解细胞内的核苷酸,从而调节其水平并消除潜在的有毒衍生物。抗辐射细菌耐辐射球菌的基因组编码25种Nudix水解酶,数量出乎意料地多。这些酶可能通过去除诱变的氧化及其他受损核苷酸来促进抗辐射能力。对这些水解酶进行表征对于理解它们存在的原因至关重要。在此,我们报告了DR0975基因产物的克隆与表征,这是一种似乎为此生物体所特有的Nudix水解酶。
DR0975基因被克隆,并在大肠杆菌中表达为一种20 kDa带组氨酸标签的重组产物。对纯化酶的底物分析表明,它主要作为一种磷酸酶起作用,对(脱氧)核苷5'-二磷酸具有明显偏好(dGDP > ADP > dADP > GDP > dTDP > UDP > dCDP > CDP)。在最佳测定条件(pH 9.4,7.5 mM Mg2+)下,dGDP的Km为110 microM,kcat为0.18 s-1。8-羟基-2'-脱氧鸟苷5'-二磷酸(8-OH-dGDP)也是一种底物,Km为170 microM,kcat为0.13 s-1。因此,DR0975对8-OH-dGDP和dGDP没有偏好。在NADH和一些(二)腺苷多磷酸上也观察到有限的焦磷酸酶活性,但对其他底物没有。在对数期细胞中未检测到DR0975基因的表达,但在稳定期至少诱导了30倍。超氧化物应激而非过氧化物应激,以及缓慢而非快速脱水,都导致DR0975基因有轻微诱导。
Nudix水解酶的核苷酸底物符合NDP-X结构,其中X可以是几个基团之一。因此,对(脱氧)核苷二磷酸本身有偏好是非常不寻常的。作为底物时对8-OH-dGDP和dGDP没有偏好,再加上在稳定期被诱导,但不是由过氧化物或超氧化物诱导,这表明DR09075的功能可能是在稳定期非常不同的代谢需求下协助核苷酸的循环利用。因此,如果DR0975确实有助于抗辐射,这种贡献可能是间接的。