Design, Synthesis, and Pharmacological Profiling of Serine/Threonine Kinase 33 (STK33) Inhibitors for Nonhormonal Male Contraception

Abstract Serine/threonine kinase 33 (STK33) is a male germ-specific nonhormonal contraceptive target that is both genetically and chemically validated. Building on our previously reported reversible male contraceptive inhibitor, CDD-2807, we conducted systematic structure−activity relationship (SAR) and structure−property relationship (SPR) studies on the 3-(biphenylethynyl)-1H-indazole scaffold to address key drug development liabilities, most notably poor kinetic solubility. These efforts identified CDD-3094, which exhibits a balanced profile characterized by retained nanomolar cellular potency, >100 μM kinetic solubility, comparable metabolic stability, reduced human ether-à-go-go-related gene (hERG) channel inhibition, and a favorable cellular kinase profile, with 278 of 300 kinases (92.7%) displaying <30% occupancy at 1000 nM. Leveraging X-ray crystallography of the STK33/CDD-3094 complex, we performed structure-based modifications to specifically target the primary off-target liability, CDC-like kinase 4 (CLK4). This work culminated in the discovery of compound 40, which achieved 446-fold biochemical selectivity for STK33 over CLK4. While its cellular potency is attenuated to >1 μM, this analog provides a valuable biochemical tool for investigating STK33 selectivity and highlights the challenges of balancing kinase discrimination with intracellular activity. Collectively, these studies establish a foundation for developing soluble STK33 inhibitors, facilitating further preclinical refinement of nonhormonal male contraceptives.

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Publication Details

Journal
Journal of Medicinal Chemistry
Published
2026-10-09
DOI
https://doi.org/10.1021/acs.jmedchem.6c00790
Primary Topic
Synthesis and biological activity
Type
article
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article

Design, Synthesis, and Pharmacological Profiling of Serine/Threonine Kinase 33 (STK33) Inhibitors for Nonhormonal Male Contraception

Zhi Tan, Hai Minh Ta, Angela F. Ku, Chandrashekhar Madasu et al.
Journal of Medicinal Chemistry
Synthesis and biological activity
article

Design, Synthesis, and Pharmacological Profiling of Serine/Threonine Kinase 33 (STK33) Inhibitors for Nonhormonal Male Contraception

Zhi Tan, Hai Minh Ta, Angela F. Ku, Chandrashekhar Madasu, Kiran Lata Sharma, Mingxing Teng, Srinivas Chamakuri, Choel Kim, Martin Matthew Matzuk, Qi Miao, Damian W. Young, Banumathi Sankaran, Xuan Qin, Kurt M. Bohren, Geena Kaown, Ravikumar Jimmidi, Jian Wang, Feng Li, Yong Wang
article en

Abstract

Abstract Serine/threonine kinase 33 (STK33) is a male germ-specific nonhormonal contraceptive target that is both genetically and chemically validated. Building on our previously reported reversible male contraceptive inhibitor, CDD-2807, we conducted systematic structure−activity relationship (SAR) and structure−property relationship (SPR) studies on the 3-(biphenylethynyl)-1H-indazole scaffold to address key drug development liabilities, most notably poor kinetic solubility. These efforts identified CDD-3094, which exhibits a balanced profile characterized by retained nanomolar cellular potency, >100 μM kinetic solubility, comparable metabolic stability, reduced human ether-à-go-go-related gene (hERG) channel inhibition, and a favorable cellular kinase profile, with 278 of 300 kinases (92.7%) displaying <30% occupancy at 1000 nM. Leveraging X-ray crystallography of the STK33/CDD-3094 complex, we performed structure-based modifications to specifically target the primary off-target liability, CDC-like kinase 4 (CLK4). This work culminated in the discovery of compound 40, which achieved 446-fold biochemical selectivity for STK33 over CLK4. While its cellular potency is attenuated to >1 μM, this analog provides a valuable biochemical tool for investigating STK33 selectivity and highlights the challenges of balancing kinase discrimination with intracellular activity. Collectively, these studies establish a foundation for developing soluble STK33 inhibitors, facilitating further preclinical refinement of nonhormonal male contraceptives.

Journal of Medicinal Chemistry
Lawrence Berkeley National Laboratory (US), Baylor College of Medicine (US)
Openalex Percentile: Top 24%
Synthesis and biological activity
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