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Enzymatic conversion continuously monitored with a robotic nanoESI-MS tool: experimental status

机译:用机器人nanoESI-MS工具连续监测酶促转化:实验状态

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The presented study describes an adaptation of enzymatic assays to miniaturized and automated nanoelectrospray ionization (nanoESI)-mass spectrometry (MS). The system consists of a liquid handling robot including an ESI chip source and offers several advantages for the investigation of enzymatic reactions. Therewith different parameters can be tested rapidly and automatically. Thus the technique provides a basis for the efficient development of enzymatic assays using MS detection. In the present project the miniaturized setup was applied to become appropriate for the investigation of various enzymatic assays since real-time measurements using automated nanospray robots are not reported in detail so far. The reaction of hen egg white lysozyme (HEWL) and the saccharide hexa-N-acetylchitohexaose (GlcNAc)6 was used as an exemplary model system. The generation of a stable nanoelectrospray using aqueous solution with enzymes/proteins was typically the main difficulty. Thus various parameters were systematically tested and adjusted to overcome these instabilities. This resulted in moderate, but improved, spray stability. Moreover, the new adjustments were applied to further enzymatic assays (chitinase, chymotrypsin and acetylcholinesterase). In doing so, they were tested whether they are applicable in universal manner. These assays reveal additional findings like a partial reduction of enzymatic activity in the nanoESI setup. The observed complicacies in spraying pure aqueous solutions and the partial enzyme inactivation will be discussed in detail as well as possible approaches to overcome them.
机译:提出的研究描述了酶促测定对小型化和自动纳米电喷雾电离(nanoESI)质谱(MS)的适应性。该系统由一个带有ESI芯片源的液体处理机器人组成,为酶促反应的研究提供了许多优势。从而可以快速,自动地测试不同的参数。因此,该技术为使用MS检测有效开发酶法提供了基础。在本项目中,由于到目前为止尚未详细报道使用自动纳米喷雾机器人进行的实时测量,因此已将小型化设置应用于各种酶促测定的研究。鸡蛋清溶菌酶(HEWL)和糖六-N-乙酰基壳六糖(GlcNAc)6的反应用作示例性模型系统。使用具有酶/蛋白质的水溶液产生稳定的纳米电喷雾通常是主要的困难。因此,系统地测试和调整了各种参数以克服这些不稳定性。这导致适度但改善的喷雾稳定性。此外,新的调整已应用于进一步的酶法测定(几丁质酶,胰凝乳蛋白酶和乙酰胆碱酯酶)。为此,对它们进行了测试,以确定它们是否适用于通用方式。这些测定揭示了其他发现,例如nanoESI设置中酶活性的部分降低。将详细讨论在喷射纯水溶液和部分酶失活过程中观察到的复杂性以及克服这些复杂性的可能方法。

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