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In silico and crystallographic studies identify key structural features of biliverdin IXβ reductase inhibitors having nanomolar potency

机译:在计算机和晶体学研究中确定了具有纳摩尔浓度的biliverdinIXβ还原酶抑制剂的关键结构特征

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摘要

Heme cytotoxicity is minimized by a two-step catabolic reaction that generates biliverdin (BV) and bilirubin (BR) tetrapyrroles. The second step is regulated by two non-redundant biliverdin reductases (IXα (BLVRA) and IXβ (BLVRB)), which retain isomeric specificity and NAD(P)H-dependent redox coupling linked to BR's antioxidant function. Defective BLVRB enzymatic activity with antioxidant mishandling has been implicated in metabolic consequences of hematopoietic lineage fate and enhanced platelet counts in humans. We now outline an integrated platform of in silico and crystallographic studies for the identification of an initial class of compounds inhibiting BLVRB with potencies in the nanomolar range. We found that the most potent BLVRB inhibitors contain a tricyclic hydrocarbon core structure similar to the isoalloxazine ring of flavin mononucleotide and that both xanthene- and acridine-based compounds inhibit BLVRB's flavin and dichlorophenolindophenol (DCPIP) reductase functions. Crystallographic studies of ternary complexes with BLVRB–NADP+–xanthene-based compounds confirmed inhibitor binding adjacent to the cofactor nicotinamide and interactions with the Ser-111 side chain. This residue previously has been identified as critical for maintaining the enzymatic active site and cellular reductase functions in hematopoietic cells. Both acridine- and xanthene-based compounds caused selective and concentration-dependent loss of redox coupling in BLVRB-overexpressing promyelocytic HL-60 cells. These results provide promising chemical scaffolds for the development of enhanced BLVRB inhibitors and identify chemical probes to better dissect the role of biliverdins, alternative substrates, and BLVRB function in physiologically relevant cellular contexts.
机译:血红素的细胞毒性可通过两步分解代谢反应最小化,该反应可生成胆绿素(BV)和胆红素(BR)四吡咯。第二步是通过两种非冗余的biliverdin还原酶(IXα(BLVRA)和IXβ(BLVRB))调节的,这些酶保留异构体特异性和与BR的抗氧化剂功能相关的NAD(P)H依赖性氧化还原偶联。具有抗氧化剂处理不当的缺陷BLVRB酶活性与人类造血谱系命运的代谢后果和血小板计数增加有关。现在,我们概述了计算机和晶体学研究的集成平台,用于识别抑制纳摩尔浓度范围内效力的BLVRB的初始化合物。我们发现最有效的BLVRB抑制剂包含类似于黄素单核苷酸的异四恶嗪环的三环烃核结构,并且基于x吨和a啶的化合物均抑制BLVRB的黄素和二氯苯酚吲哚酚(DCPIP)还原酶功能。用BLVRB-NADP + -x吨为基础的化合物进行三元复合物的晶体学研究证实,抑制剂与辅因子烟酰胺相邻并与Ser-111侧链相互作用。先前已鉴定出该残基对于维持造血细胞中的酶活性位点和细胞还原酶功能至关重要。基于a啶和x吨的化合物都导致过表达BLVRB的早幼粒细胞HL-60细胞中氧化还原偶联的选择性和浓度依赖性损失。这些结果为开发增强的BLVRB抑制剂提供了有前途的化学支架,并鉴定了化学探针,可更好地剖析biliverdins,替代底物和BLVRB在生理相关细胞环境中的作用。

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