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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >NMR coupling versus NMR chemical shift information in metallobiochemistry. High-resolution one-bond H-1-C-13 coupling constants obtained by a sensitive reverse detection method
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NMR coupling versus NMR chemical shift information in metallobiochemistry. High-resolution one-bond H-1-C-13 coupling constants obtained by a sensitive reverse detection method

机译:金属叶化学中的NMR耦合与NMR化学位移信息。通过灵敏的反向检测方法获得的高分辨率单键H-1-C-13耦合常数

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摘要

Imidazole rings are involved in acid/base chemistry, catalysis, H-bonding, and metal complexation throughout biochemistry; these rings are frequently targets for anticancer drugs and carcinogens. However, interpreting the changes in C-13 NMR shifts of these rings is often difficult. We explore the use of high-resolution one-bond H-1-C-13 coupling constants ((1)J(CH)) for the identification of electronic changes within imidazole rings of samples containing C-13 in natural abundance. The reverse detection method used, called J-coupled heteronuclear multiple quantum coherence (JHMQC) spectroscopy, employs a modified HMQC pulse sequence. The method was evaluated with B-12 models of the type Me(3)BzmCo(DH)(2)(R or X), where Me(3)Bzm = 1,5,6-trimethylbenzimidazole and DH = the monoanion of dimethylglyoxime. (1)J(CH) values of Me(3)BzmCo(DH)(2)CH3 obtained from both JHMQC and standard coupled 1D C-13 NMR spectra led to similar values, but the JHMQC method gave better resolution and much higher signal-to-noise ratios. The (1)J(CH) values for the endocyclic carbons and the N-methyl group of the Me(3)Bzm in five models fell between those of the free and protonated Me(3)Bzm ligands. Thus, donation of electron density from Me(3)Bzm to the Co center typically increases (1)J(CH) values with respect to the free ligand. Values of (1)J(CH) for several C-13 NMR signals correlated with both EP, a reported measure of electron-donating ability of R or X, and Co-N bond lengths from X-ray structures. For the assessment of electronic properties of the metal center, the (1)J(CH) values appear to be more reliable parameters than the traditionally used C-13 shifts, especially for C's close to the metal. Moreover, (1)J(CH) values for the C-13 signals for Co-C-13 were observed in several models; the C-13 signals for these carbons attached to the quadrupolar cobalt are too broad for (1)J(CH) determination by the traditional 1D method. The JHMQC method developed here is thus very versatile and can provide information on any type of molecule showing resolved CH signals. [References: 49]
机译:咪唑环在整个生物化学过程中涉及酸/碱化学,催化,氢键和金属络合。这些环通常是抗癌药和致癌物的靶标。但是,通常很难解释这些环的C-13 NMR位移的变化。我们探索使用高分辨率的一键H-1-C-13耦合常数((1)J(CH))来识别自然丰度中包含C-13的样品的咪唑环内的电子变化。所使用的反向检测方法称为J耦合异核多量子相干(JHMQC)光谱,它采用改良的HMQC脉冲序列。使用Me(3)BzmCo(DH)(2)(R或X)类型的B-12模型对方法进行了评估,其中Me(3)Bzm = 1,5,6-三甲基苯并咪唑,DH =二甲基乙二肟的单阴离子。从JHMQC和标准耦合1D C-13 NMR光谱获得的Me(3)BzmCo(DH)(2)CH3的(1)J(CH)值导致相似的值,但JHMQC方法提供了更好的分辨率和更高的信号噪声比。 Me(3)Bzm的五个模型中的环内碳和N-甲基的(1)J(CH)值介于游离和质子化的Me(3)Bzm配体之间。因此,从Me(3)Bzm到Co中心的电子密度捐赠相对于自由配体通常增加(1)J(CH)值。几个C-13 NMR信号的(1)J(CH)值与EP,X或X射线结构的Co-N键长度和EP,已报道的R或X的电子给体能力的测量值相关。为了评估金属中心的电子性能,(1)J(CH)值似乎是比传统使用的C-13位移更可靠的参数,尤其是对于靠近金属的C。此外,在几个模型中观察到(1)Co-C-13的C-13信号的J(CH)值;对于通过传统一维方法测定(1)J(CH)而言,与四极钴相连的这些碳的C-13信号太宽。因此,这里开发的JHMQC方法非常通用,可以提供有关显示分辨CH信号的任何类型分子的信息。 [参考:49]

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