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Published on: September 18, 2013
Potential Pharmacological Inhibitors of Pim Kinase Under Clinical Trials
Gomathi P Jeyapal1, Moola J N Chandrasekar1, Rajendiran Krishnasamy2
1Department of Pharmaceutical Chemistry, JSS College of Pharmacy (A Constituent College of Jagadguru Sri Shivarathreeswara University, Mysuru), Ootacamund-643001, Tamilnadu, India.
Abstract:
Pim kinases, also known as Serine/Threonine kinases, are intensively studied protein drug targets in cancer research. They play crucial role in the regulation of signal transduction cascades that promote cell survival, proliferation and drug resistance. Pim kinases are overexpressed in several hematopoietic and solid tumors and support in vitro/in vivo malignant cell growth and survival, through cell cycle regulation and inhibition of apoptosis. Pim kinases do not have an identified regulatory domain, as they are constitutively active. They appear to be critical downstream effectors of a number of oncoproteins. When overexpressed, they mediate drug resistance to agents such as Rapamycin. X-ray crystallographic studies reveal that unlike other kinases, Pim kinases have a hinge region, which forms a unique binding pocket for ATP, offering a target for a large number of potent small-molecule Pim kinase inhibitors. Combination therapy of Pim kinase inhibitors with chemotherapeutic and other kinase modulators seems to produce an additive cytotoxic effect in cancer cells. Though clinical trials have been carried out on the first Pim inhibitory agent, SGI-1776, no concept data could be generated due to its early withdrawal. However, it has helped in accelerating the discovery of several novel Pim inhibitors in recent years. Current research on Pim kinase is expected to lead to a new generation of potent Pim kinase inhibitors with appropriate pharmacological profiles suitable for human cancer therapy in the near future. Herein, we review the synthetic route and mechanistical studies of Pim kinase inhibitors which are currently in human trials.
Insights
Pim kinases are key targets in cancer therapy, driving cell survival and drug resistance. New small-molecule inhibitors show promise for future cancer treatments.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Pim kinases (Serine/Threonine kinases) are overexpressed in various cancers, promoting cell survival, proliferation, and drug resistance.
- Their constitutive activity and role as downstream effectors of oncoproteins highlight their significance in malignant growth.
- Pim kinases are implicated in resistance to therapies like Rapamycin and represent attractive targets for novel cancer drugs.
Purpose of the Study:
- To review the synthetic routes and mechanistic studies of Pim kinase inhibitors.
- To highlight the potential of small-molecule inhibitors targeting Pim kinases for cancer therapy.
- To discuss the current landscape and future prospects of Pim kinase inhibitor development.
Main Methods:
- Review of existing literature on Pim kinase inhibitors.
- Analysis of X-ray crystallographic data revealing unique binding pockets in Pim kinases.
- Examination of preclinical and clinical trial data for Pim kinase inhibitors.
Main Results:
- Pim kinases possess a unique ATP-binding pocket, making them amenable to small-molecule inhibition.
- Combination therapy with Pim kinase inhibitors demonstrates additive cytotoxic effects in cancer cells.
- Despite early setbacks (e.g., SGI-1776), research has accelerated the discovery of novel Pim inhibitors.
Conclusions:
- Pim kinase inhibitors represent a promising new generation of cancer therapeutics.
- Further research into synthetic routes and mechanistic studies is crucial for developing effective Pim kinase inhibitors.
- Targeting Pim kinases holds potential for overcoming drug resistance and improving patient outcomes in various cancers.
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