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Tuned by metals: the TET peptidase activity is controlled by 3 metal binding sites

机译:由金属调节:TET肽酶活性受3个金属结合位点控制

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摘要

TET aminopeptidases are dodecameric particles shared in the three life domains involved in various biological processes, from carbon source provider in archaea to eye-pressure regulation in humans. Each subunit contains a dinuclear metal site (M1 and M2) responsible for the enzyme catalytic activity. However, the role of each metal ion is still uncharacterized. Noteworthy, while mesophilic TETs are activated by Mn2+, hyperthermophilic TETs prefers Co2+. Here, by means of anomalous x-ray crystallography and enzyme kinetics measurements of the TET3 aminopeptidase from the hyperthermophilic organism Pyrococcus furiosus (PfTET3), we show that M2 hosts the catalytic activity of the enzyme, while M1 stabilizes the TET3 quaternary structure and controls the active site flexibility in a temperature dependent manner. A new third metal site (M3) was found in the substrate binding pocket, modulating the PfTET3 substrate preferences. These data show that TET activity is tuned by the molecular interplay among three metal sites.
机译:从古细菌中的碳源提供者到人类的眼压调节,TET氨基肽酶是十二碳颗粒,在三个生命域中共享,这些生命域参与了各种生物过程。每个亚基均包含负责酶催化活性的双核金属位点(M1和M2)。但是,每种金属离子的作用仍然未知。值得注意的是,虽然嗜温TET被Mn 2 + 激活,但超嗜热TET更喜欢Co 2 + 。在这里,通过异常嗜热性热球菌Pyrococcus furiosus(PfTET3)的TET3氨基肽酶的X射线晶体学异常和酶动力学测量,我们表明M2承载了酶的催化活性,而M1稳定了TET3的四级结构并控制了活动部位的柔韧性取决于温度。在底物结合袋中发现了一个新的第三金属位点(M3),调节了PfTET3底物的偏好。这些数据表明,TET活性是通过三个金属位点之间的分子相互作用来调节的。

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