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从[2Mn2S]金刚石核到蝶形菱形:突出交替肽结合位点的转变。

From [2Mn2S] Diamond Cores to Butterfly Rhombs: Transformations That Highlight Alternating Peptide Binding Sites.

机构信息

Department of Chemistry, Texas A&M University, College Station, Texas 77845, United States.

出版信息

Inorg Chem. 2024 Nov 4;63(44):21375-21385. doi: 10.1021/acs.inorgchem.4c04051. Epub 2024 Oct 25.

Abstract

Thiocarboxamide chelates are known to assemble [2Mn2S] diamond core complexes via μ-S bridges that connect two Mn(CO) fragments. These can exist as and -isomers and interconvert via 16-electron, monomeric intermediates. Herein, we demonstrate that reduction of such Mn derivatives leads to a loss of one thiocarboxamide ligand and a switch of ligand binding mode from an O- to N-donor of the amide group, yielding a dianionic butterfly rhomb with a short Mn-Mn distance, 2.52 Å. Structural and chemical analyses suggest that reduction of the Mn(I) centers is dependent on the protonation state of the amide-H, as total deprotonation followed by reduction does not result in the reduction of the Mn core. Partial deprotonation followed by reduction suggests a pathway that involves monomeric Mn(CO)(S-O) and Mn(CO)(S-N) intermediates. Ligand modifications to tertiary amides that remove the possibility of amide-H reduction led to complexes that preserve the [2Mn2S] diamond core during chemical reduction. Further comparison with the system, linking the Mn(CO)(S-O) sites together, suggests that dimer dissociation is necessary for the overall reductive transformation. These results highlight organomanganese carbonyl chemistry to establish illustrations of peptide fragment binding modes in the uptake of low-valent metal carbonyls related to binuclear active sites of biocatalysts.

摘要

硫代甲酰胺螯合物通过连接两个 Mn(CO) 片段的 μ-S 桥组装成 [2Mn2S] 金刚石核配合物。这些配合物可以作为 和 -异构体存在,并通过 16 电子、单体中间体相互转化。在此,我们证明了此类 Mn 衍生物的还原会导致一个硫代甲酰胺配体的丢失,以及酰胺基团的配体结合模式从 O-到 N-供体的转变,生成一个具有短 Mn-Mn 距离(2.52 Å)的二阴离子蝶形菱形。结构和化学分析表明,Mn(I)中心的还原取决于酰胺-H 的质子化状态,因为完全去质子化后再还原不会导致 Mn 核的还原。部分去质子化后再还原表明涉及单体 Mn(CO)(S-O)和 Mn(CO)(S-N) 中间体的途径。对叔酰胺进行配体修饰,去除酰胺-H 还原的可能性,导致在化学还原过程中保留 [2Mn2S] 金刚石核的配合物。与 系统的进一步比较,将 Mn(CO)(S-O) 位点连接在一起,表明二聚体解离对于整体还原转化是必要的。这些结果突出了有机锰羰基化学,以建立与生物催化剂双核活性位点相关的低价金属羰基物摄取中肽片段结合模式的例证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e477/11539053/1b311ccf6831/ic4c04051_0007.jpg

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