Neosetophomone B induces apoptosis in multiple myeloma cells via targeting of AKT/SKP2 signaling pathway

Author:

Kuttikrishnan Shilpa12,Ahmad Fareed13,Mateo Jericha M.1,Prabhu Kirti S.1,El‐Elimat Tamam4,Oberlies Nicholas H.5,Pearce Cedric J.6,Akil Ammira S. Alshabeeb7,Bhat Ajaz A.7,Alali Feras Q.2,Uddin Shahab138ORCID

Affiliation:

1. Translational Research Institute, Academic Health System Hamad Medical Corporation Doha Qatar

2. College of Pharmacy, QU Health Qatar University Doha Qatar

3. Dermatology Institute, Academic Health System Hamad Medical Corporation Doha Qatar

4. Department of Medicinal Chemistry and Pharmacognosy, Faculty of Pharmacy Jordan University of Science and Technology Irbid Jordan

5. Department of Chemistry and Biochemistry University of North Carolina at Greensboro Greensboro North Carolina USA

6. Mycosynthetix Inc. Hillsborough North Carolina USA

7. Department of Human Genetics‐Precision Medicine in Diabetes Obesity and Cancer Research Program, Sidra Medicine Doha Qatar

8. Laboratory of Animal Research Center Qatar University Doha Qatar

Abstract

AbstractMultiple myeloma (MM) is a hematologic malignancy associated with malignant plasma cell proliferation in the bone marrow. Despite the available treatments, drug resistance and adverse side effects pose significant challenges, underscoring the need for alternative therapeutic strategies. Natural products, like the fungal metabolite neosetophomone B (NSP‐B), have emerged as potential therapeutic agents due to their bioactive properties. Our study investigated NSP‐B's antitumor effects on MM cell lines (U266 and RPMI8226) and the involved molecular mechanisms. NSP‐B demonstrated significant growth inhibition and apoptotic induction, triggered by reduced AKT activation and downregulation of the inhibitors of apoptotic proteins and S‐phase kinase protein. This was accompanied by an upregulation of p21Kip1 and p27Cip1 and an elevated Bax/BCL2 ratio, culminating in caspase‐dependent apoptosis. Interestingly, NSP‐B also enhanced the cytotoxicity of bortezomib (BTZ), an existing MM treatment. Overall, our findings demonstrated that NSP‐B induces caspase‐dependent apoptosis, increases cell damage, and suppresses MM cell proliferation while improving the cytotoxic impact of BTZ. These findings suggest that NSP‐B can be used alone or in combination with other medicines to treat MM, highlighting its importance as a promising phytoconstituent in cancer therapy.

Publisher

Wiley

Subject

Cell Biology,General Medicine

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