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人血红蛋白的晶体学分析阐明了香草醛吡啶基衍生物强大的双重抗镰状细胞活性的结构基础。

Crystallographic analysis of human hemoglobin elucidates the structural basis of the potent and dual antisickling activity of pyridyl derivatives of vanillin.

作者信息

Abdulmalik Osheiza, Ghatge Mohini S, Musayev Faik N, Parikh Apurvasena, Chen Qiukan, Yang Jisheng, Nnamani Ijeoma, Danso-Danquah Richmond, Eseonu Dorothy N, Asakura Toshio, Abraham Donald J, Venitz Jurgen, Safo Martin K

机构信息

Division of Hematology, The Children's Hospital of Philadelphia, Philadelphia, PA 19104, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2011 Nov;67(Pt 11):920-8. doi: 10.1107/S0907444911036353. Epub 2011 Oct 19.

Abstract

Vanillin has previously been studied clinically as an antisickling agent to treat sickle-cell disease. In vitro investigations with pyridyl derivatives of vanillin, including INN-312 and INN-298, showed as much as a 90-fold increase in antisickling activity compared with vanillin. The compounds preferentially bind to and modify sickle hemoglobin (Hb S) to increase the affinity of Hb for oxygen. INN-312 also led to a considerable increase in the solubility of deoxygenated Hb S under completely deoxygenated conditions. Crystallographic studies of normal human Hb with INN-312 and INN-298 showed that the compounds form Schiff-base adducts with the N-terminus of the α-subunits to constrain the liganded (or relaxed-state) Hb conformation relative to the unliganded (or tense-state) Hb conformation. Interestingly, while INN-298 binds and directs its meta-positioned pyridine-methoxy moiety (relative to the aldehyde moiety) further down the central water cavity of the protein, that of INN-312, which is ortho to the aldehyde, extends towards the surface of the protein. These studies suggest that these compounds may act to prevent sickling of SS cells by increasing the fraction of the soluble high-affinity Hb S and/or by stereospecific inhibition of deoxygenated Hb S polymerization.

摘要

香草醛此前已作为一种抗镰变剂进行临床研究,用于治疗镰状细胞病。对香草醛的吡啶衍生物(包括INN - 312和INN - 298)进行的体外研究表明,与香草醛相比,其抗镰变活性提高了90倍之多。这些化合物优先结合并修饰镰状血红蛋白(Hb S),以增加Hb对氧气的亲和力。在完全脱氧的条件下,INN - 312还使脱氧Hb S的溶解度显著增加。对正常人血红蛋白与INN - 312和INN - 298进行的晶体学研究表明,这些化合物与α亚基的N端形成席夫碱加合物,相对于未结合配体(或紧张状态)的Hb构象,限制结合配体(或松弛状态)的Hb构象。有趣的是,虽然INN - 298将其间位吡啶 - 甲氧基部分(相对于醛基部分)结合并引导至蛋白质中心水腔的更深处,但与醛基邻位的INN - 312的该部分则向蛋白质表面延伸。这些研究表明,这些化合物可能通过增加可溶性高亲和力Hb S的比例和/或通过对脱氧Hb S聚合的立体特异性抑制来防止SS细胞镰变。

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