Research Progress on hCNT3 Structure/Function and Nucleoside Anticancer Drugs.

IF 1.9 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Current protein & peptide science Pub Date : 2024-01-01 DOI:10.2174/1389203724666230905110952
Xinru Yue, Xun Zhang, Derong Zhang, Zhigang Zhang, Lingkai Tang, Zuoxin Ou, Yujie Cao, Jing Li, Ying Li, Li Liang, Wei Liu, Jianping Hu
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Abstract

Membrane protein human concentrative nucleoside transporter 3 (hCNT3) can not only transport extracellular nucleosides into the cell but also transport various nucleoside-derived anticancer drugs to the focus of infection for therapeutic effects. Typical nucleoside anticancer drugs, including fludarabine, cladabine, decitabine, and clofarabine, are recognized by hCNT3 and then delivered to the lesion site for their therapeutic effects. hCNT3 is highly conserved during the evolution from lower to higher vertebrates, which contains scaffold and transport domains in structure and delivers substrates by coupling with Na+ and H+ ions in function. In the process of substrate delivery, the transport domain rises from the lower side of transmembrane 9 (TM9) in the inward conformation to the upper side of the outward conformation, accompanied by the collaborative motion of TM7b/ TM4b and hairpin 1b (HP1b)/ HP2b. With the report of a series of three-dimensional structures of homologous CNTs, the structural characteristics and biological functions of hCNT3 have attracted increasing attention from pharmacists and biologists. Our research group has also recently designed an anticancer lead compound with high hCNT3 transport potential based on the structure of 5-fluorouracil. In this work, the sequence evolution, conservation, molecular structure, cationic chelation, substrate recognition, elevator motion pattern and nucleoside derivative drugs of hCNT3 were reviewed, and the differences in hCNT3 transport mode and nucleoside anticancer drug modification were summarized, aiming to provide theoretical guidance for the subsequent molecular design of novel anticancer drugs targeting hCNT3.

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hCNT3 结构/功能与核苷类抗癌药物的研究进展。
膜蛋白人类浓缩核苷酸转运体 3(hCNT3)不仅能将细胞外核苷酸转运到细胞内,还能将各种核苷酸类抗癌药物转运到感染灶,以发挥治疗作用。典型的核苷类抗癌药物包括氟达拉滨、克拉达滨、地西他滨和氯法拉滨,它们都能被 hCNT3 识别,然后被运送到病变部位发挥治疗作用。hCNT3 在从低等脊椎动物到高等脊椎动物的进化过程中高度保守,其结构中包含支架域和转运域,功能上通过与 Na+ 和 H+ 离子偶联来运送底物。在输送底物的过程中,运输结构域从内向构象的跨膜 9 (TM9) 下侧上升到外向构象的上侧,同时伴随着 TM7b/ TM4b 和发夹 1b (HP1b)/ HP2b 的协同运动。随着一系列同源碳纳米管三维结构的报道,hCNT3 的结构特征和生物功能越来越受到药理学家和生物学家的关注。我们的研究小组最近也根据 5-氟尿嘧啶的结构设计了一种具有高 hCNT3 转运潜力的抗癌先导化合物。本文综述了hCNT3的序列进化、守恒性、分子结构、阳离子螯合、底物识别、升降机运动模式和核苷衍生物药物,总结了hCNT3转运模式和核苷类抗癌药物修饰的差异,旨在为后续以hCNT3为靶点的新型抗癌药物的分子设计提供理论指导。
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来源期刊
Current protein & peptide science
Current protein & peptide science 生物-生化与分子生物学
CiteScore
5.20
自引率
0.00%
发文量
73
审稿时长
6 months
期刊介绍: Current Protein & Peptide Science publishes full-length/mini review articles on specific aspects involving proteins, peptides, and interactions between the enzymes, the binding interactions of hormones and their receptors; the properties of transcription factors and other molecules that regulate gene expression; the reactions leading to the immune response; the process of signal transduction; the structure and function of proteins involved in the cytoskeleton and molecular motors; the properties of membrane channels and transporters; and the generation and storage of metabolic energy. In addition, reviews of experimental studies of protein folding and design are given special emphasis. Manuscripts submitted to Current Protein and Peptide Science should cover a field by discussing research from the leading laboratories in a field and should pose questions for future studies. Original papers, research articles and letter articles/short communications are not considered for publication in Current Protein & Peptide Science.
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