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Ancient metalloenzymes as possible markers in molecular archaeology

机译:古代金属酶可能是分子考古学的标志

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The successful preparation of an active remnant of Cu,Zn-superoxide dismutase from mummified brain tissue stimulated the isolation of both biochemically and immunologically active alkaline Zn2Mg-phosphatase from antique bone samples of different archaeological sites and age. In particular, specimens from pharaonic Egypt being up to 4000 years of age were used. Gel filtration, ion exchange and affinity chromatographies were employed to optimise the preparation of the ancient enzyme. Compared to the specific activity of alkaline phosphatase from modem autopsy some 50% for a Ptolemaic and 10% for the Old Kingdom enzyme was detectable. The possibility of microbial contamination was checked by employing specific monoclonal antibodies directed against the human bone enzyme. Fortunately, ubiquitously present specified microorganisms on the respective ancient bones did not cross-react with these antibodies while the ancient metalloenzyme reacted with high specificity. Alkaline phosphatase mimicks could be excluded as in the presence of the inhibitors 1,10-phenanthroline and L-homoarginine the enzyme activity was diminished. The presence of ortho-vanadate as a substrate analogon abolished the catalytic function of the enzyme. Likewise, heating to 100 degrees C and replacement of zinc(II) by cadmium(II) resulted in a dramatic loss of activity. In conclusion, alkaline phosphatase appears to be a useful marker enzyme in molecular archaeology. (C)2000 Elsevier Science Inc. All rights reserved. [References: 17]
机译:从木乃伊的脑组织中成功制备出活性残留的Cu,Zn-超氧化物歧化酶,刺激了从不同考古遗址和年龄的古董骨样品中分离出具有生化和免疫活性的碱性Zn2Mg-磷酸酶。尤其是,使用了来自法老埃及的标本,标本的最高年龄为4000年。凝胶过滤,离子交换和亲和色谱法用于优化古酶的制备。与来自现代尸检的碱性磷酸酶的比活性相比,托勒密约占50%,旧王国约占10%。通过使用针对人骨酶的特异性单克隆抗体,检查了微生物污染的可能性。幸运的是,在古老的金属酶发生高特异性反应的同时,在各个古代骨骼上普遍存在的特定微生物并未与这些抗体发生交叉反应。可以排除碱性磷酸酶的模仿,因为在存在抑制剂1,10-菲咯啉和L-高精氨酸时,酶的活性会降低。原钒酸盐作为底物类似物的存在消除了该酶的催化功能。同样,加热到100摄氏度并用镉(II)代替锌(II)导致活性急剧下降。总之,碱性磷酸酶似乎是分子考古学中有用的标记酶。 (C)2000 Elsevier Science Inc.保留所有权利。 [参考:17]

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