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  2. Design and development of 5'-modified 7-substituted 4'-thionucleosides as potent Haspin inhibitors: Synthesis and biological evaluation

Design and development of 5'-modified 7-substituted 4'-thionucleosides as potent Haspin inhibitors: Synthesis and biological evaluation

  • Bioorg Chem. 2025 Nov:166:109146. doi: 10.1016/j.bioorg.2025.109146.
Yun A Yum 1 Sung Chul Jang 1 Seung Woo Kim 1 Dnyandev B Jarhad 1 Vikas R Aswar 1 Sushil Kumar Tripathi 1 Eun Seo Bae 1 Hongseok Choi 1 Jinha Yu 2 Sang Kook Lee 1 Lak Shin Jeong 3
Affiliations

Affiliations

  • 1 Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 08826, Republic of Korea.
  • 2 College of Pharmacy and Graduate School of Pharmaceutical Sciences, Ewha Womans University, Seoul 03760, Republic of Korea.
  • 3 Research Institute of Pharmaceutical Sciences, College of Pharmacy, Seoul National University, Seoul 08826, Republic of Korea; Future Medicine Co., Ltd, 54 Changup-ro, Sujeong-gu, Seongnam, Gyeonggi-do 13449, Republic of Korea. Electronic address: [email protected].
Abstract

Haspin, a serine/threonine kinase essential for proper chromosome alignment during Mitosis, has emerged as a promising Anticancer target due to its selective function in proliferating cells. In our previous study, we identified LJ-4827, a 7-acetylene-substituted 4'-thionucleoside analog bearing a 5'-azido group, as a potent Haspin inhibitor with significant antiproliferative effects. To further optimize activity, we synthesized a series of novel 4'-thionucleoside analogs with 7-substituted scaffolds and diverse 5'-position modifications, as well as selected 6-position derivatives. SAR analysis revealed that incorporation of a 7-cyano group together with small, polar 5'-substituents such as azido (1c) or amino (1d) provided the most potent Haspin inhibition, with compound 1c achieving subnanomolar potency (IC50 = 0.26 nM). Importantly, the 5'-amino analog 1d exhibited moderate Haspin inhibition (IC50 = 18 nM), together with a highly selective kinase inhibition profile and markedly improved aqueous solubility relative to 1c. These properties enabled in vivo evaluation, where 1d significantly suppressed tumor growth in a colorectal Cancer xenograft model, with comparable efficacy observed following either intraperitoneal or oral administration. These findings highlight 1d as a particularly promising Haspin-targeted Anticancer agent that combines potent activity with favorable drug-like properties.

Keywords

Anticancer agent; Colorectal cancer; Haspin; Kinase inhibitor; Mitotic kinase; Molecular modeling; Solubility; Thionucleosides.

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