A Small Indole Derivative Isolated From Caper (Capparis Ovata) as an Inducer of P53-Mediated Apoptosis in Prostate Cancer: Comprehensive In Vitro and In Silico Studies
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Abstract
Natural products with stunning chemical diversity have been extensively researched for their anticancer potential for more than fifty years. This study aimed to determine the effect of indole derivative 1H-indole-2-hydroxy-3-carboxylic acid (IHCA), isolated as a novel alkaloid from Capparis ovata, on selected tumor suppressor, apoptotic, and cell cycle regulatory genes, which are known to be important in cancer pathophysiology, on Caco-2 and LNCaP cells in comparison with Taxol. The molecular mechanism of IHCA's anticancer activity is essentially undefined. Different concentrations of IHCA increased the expression levels of apoptosis-related genes, including BCL-2 and TNF-alpha. In addition, the tumor suppressor genes PTEN, P53, and RB were increased in LNCaP and Caco-2 cells. KRAS, an oncogenic gene, was significantly downregulated by IHCA in LNCaP cells. Western blot results showed that the protein expression levels of P53 and PTEN in LNCaP cells were increased when treated with IHCA, whereas CDK4 and TNF-alpha were decreased. Finally, IHCA and doxorubicin significantly increased P53-driven luciferase activity compared to the control. The results strongly suggest that the novel natural compound IHCA has an anticancer effect involving the regulation of the P53 gene and its networks in vitro. The molecular docking and MD simulation analyses reveal that IHCA exhibits superior binding potential to the MDM2 protein compared to Nutlin-3a. MD simulations further confirm that IHCA maintains a more stable and consistent interaction with MDM2, as indicated by lower RMSD values and reduced ligand fluctuation. These results highlight IHCA's potential as a more effective MDM2 inhibitor, suggesting its promise as a lead compound for anticancer drug development.Clinical Trial Registration: Not applicable.
Description
Gazioğlu, Işıl/0000-0002-3283-1824
Keywords
Anti-Cancer, Indole-2-Hydroxy-3-Carboxylic Acid, Molecular Docking, Molecular Dynamics, P53, Male, Molecular Docking Simulation, Indoles, Cell Line, Tumor, Humans, Prostatic Neoplasms, Apoptosis, Tumor Suppressor Protein p53, Caco-2 Cells, Biyokimyasal Araştırma Yöntemleri, Kimya (çeşitli), Temel Bilimler (Sci), Yaşam Bilimleri (Life), Pharmacy, Sağlık Bilimleri, Organik Kimya, Biochemistry, Kimya, Clinical Medicine (Med), Pharmaceutical Chemistry, Biyokimya, Biyoloji ve Biyokimya, Klinik Tıp (Med), Life Sciences (Life), Pharmacology (medical), Pharmacology & Pharmacy, General Pharmacology, Toxicology and Pharmaceutics, Pharmacology, Toxicology and Pharmaceutics (miscellaneous), Multidisciplinary, Temel Bilimler, Pharmacology & Toxicology, Life Sciences, Genel Farmakoloji, Toksikoloji ve Eczacılık, Farmakoloji (tıbbi), Multidisciplinary Sciences, Chemistry, İlaç Rehberleri, Chemistry (miscellaneous), Natural Sciences (Sci), Farmakoloji ve Toksikoloji, Physical Sciences, Natural Sciences, Natural Sciences General, Farmasötik Kimya, Farmakoloji, Biochemical Research Methods, Çok Disiplinli Bilimler, Meslek Bilimleri, Drug Guides, Yaşam Bilimleri, Health Sciences, Professional Sciences, Kimya Organik, Farmakoloji, Toksikoloji ve Eczacılık (çeşitli), Eczacılık, Pharmacology, Multidisipliner, Farmakoloji ve Eczacılık, Organic Chemistry, Doğa Bilimleri Genel, General Chemistry, Pharmacology and Therapeutics, Genel Kimya, Fizik Bilimleri, Chemistry Organic, Biology & Biochemistry
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01 natural sciences, 0104 chemical sciences
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