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Transition metal and lanthanide complexes for catalysis and protein structure determination

机译:过渡金属和镧系元素络合物,用于催化和蛋白质结构测定

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摘要

This PhD thesis is divided into two sections, where the emphasis of the first section details the synthesis and development of small organic molecules as paramagnetic probes with applications in protein structure refinement. The second section involves the synthesis and characterization of a series of rhodium (I) complexes bearing functionalized tridentate pyrazolyl donor ligands and tridentate imidazolyl donor ligands. The reactivity of this series of rhodium (I) complexes towards intramolecular cyclization of alkynoic acids was investigated.The synthesis of two thiol modified dipicolinic acid based tags, 4-mercaptomethyl-2,6-pyridinedicarboxylic acid (4MMDPA, 5) and 3-mercapto-2,6-pyridinedicarboxylic acid (3MDPA, 9) were described. The ligands 4MMDPA (5) and 3MDPA (9) were attached to the N-terminal domain of the arginine repressor from E. Coli. (ArgN). Lanthanide and transition metal complexes of the ArgN-4MMDPA and ArgN-3MDPA adduct were synthesized and large PCS were observed in the HSQC spectrum demonstrating their effectiveness as paramagnetic probes in protein structure refinement using NMR spectroscopy. A series of unnatural amino acids were synthesized and used as an alternative method to introduce paramagnetic probes without the need of post translational modification. Rhodium (I) complexes bearing tridentate N,N donor ligands (pyrazole and imidazole) were syntheszied and was shown to bind to rhodium (I) in a bidentate (κ2) binding mode as shown by single crystal x-ray diffraction and variable temperature NMR spectroscopy. The activities of these complexes towards the intramolecular cyclization of aromatic and aliphatic alkynoic acids were investigated. Rhodium (I) complexes bearing imidazolyl donors were found to be highly active towards the cyclization of aliphatic and non-terminal aromatic substrates. Rhodium (I) complexes bearing pyrazolyl donors were found to be highly active towards terminal aromatic alkynoic acids. A hammett study was pursued to examine the influence of electronic nature of the terminal alkyne substituent but the results were inconclusive, however, it was found that electron withdrawing groups enhanced the rate of reaction.
机译:本博士论文分为两部分,第一部分的重点详细介绍了小有机分子作为顺磁性探针的合成与开发及其在蛋白质结构优化中的应用。第二部分涉及具有功能化的三齿吡唑基供体配体和三齿咪唑基供体配体的一系列铑(I)配合物的合成和表征。研究了该系列铑(I)配合物对炔酸分子内环化的反应性。基于巯基修饰的二吡啶甲酸的两个标记物4-巯基甲基-2,6-吡啶二羧酸(4MMDPA,5)和3-巯基的合成描述了-2,6-吡啶二羧酸(3MDPA,9)。配体4MMDPA(5)和3MDPA(9)连接到大肠杆菌的精氨酸阻遏物的N末端结构域。 (ArgN)。合成了ArgN-4MMDPA和ArgN-3MDPA加合物的镧系元素和过渡金属配合物,并在HSQC光谱中观察到了较大的PCS,证明了它们在使用NMR光谱法细化蛋白质结构中作为顺磁性探针的有效性。合成了一系列非天然氨基酸,并用作引入顺磁性探针的替代方法,而无需翻译后修饰。合成了带有三齿N,N供体配体(吡唑和咪唑)的铑(I)配合物,并显示了以二齿(κ2)结合模式与铑(I)结合,如单晶X射线衍射和可变温度NMR所示光谱学。研究了这些配合物对芳香族和脂肪族炔酸分子内环化的活性。发现带有咪唑基供体的铑(I)配合物对脂族和非末端芳族底物的环化反应具有很高的活性。发现带有吡唑基供体的铑(I)配合物对末端芳族炔酸具有高活性。进行了一项Hammett研究,以研究末端炔烃取代基的电子性质的影响,但结果尚无定论,但发现吸电子基团可提高反应速度。

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