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Tankyrase as a Novel Molecular Target in Cancer and Fibrotic Diseases
Tiruveedi Vijaya Lakshmi1, Swarna Bale1, Amit Khurana1
1Laboratory of Nano-Biology, Department of Regulatory Toxicology, National Institute of Pharmaceutical Education and Research (NIPER), Balanagar, Hyderabad, Telangana, India.
Abstract:
Tankyrases belong to a group of enzymes called poly ADP ribosyl polymerases (PARPs). With the advent of a new class of small molecule inhibitors of PARP for clinical use like OLAPARIB; that gained accelerated approval by the USFDA in treating ovarian and breast cancers, the horizons of the PARPs as a novel target in various disease conditions has risen. Tankyrases (PARP 5) are yet another class of PARPs that perform poly ADP ribosylation on different substrate proteins aiding in progression of many diseases like cancer, fibrosis, diabetes and neurological disorders even. Few of the substrates of Tankyrases are Telomeric Repeat binding Factor protein (TRF1), Axis Inhibitory protein (AXIN 1&2), Insulin Responsive Amino Peptidase (IRAP), Nuclear Mitotic Apparatus protein (NuMa), that become aberrantly active due to the apparent overexpression of the enzyme during hyper proliferative disease conditions like cancer, fibrosis and metabolic disorders like diabetes. Tankyrases intervene in many physiological processes like cell growth and survival by affecting the Wnt signaling pathways. On the other hand, these functions are overdone during cancer and fibrosis especially. The development of novel therapies for cancer is a never ending process pertaining to several issues associated with current anticancer drugs like development of drug resistance and toxicity. A fibrotic disease like lung fibrosis is a debilitating condition with limited treatment options and survival rate. Tankyrase inhibition by specific small molecule inhibitors can therefore become a good combinatorial or single treatment strategy in treating hyper proliferative diseases and diabetes. In light of all these concerns, this article aims to brief the role of Tankyrase and the relevance of its inhibition to overcome the hurdles faced by current treatment regimens.
Insights
Tankyrase enzymes, a type of PARP, play a role in diseases like cancer and diabetes. Inhibiting tankyrases with small molecules offers a promising therapeutic strategy for these conditions.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Poly ADP ribosyl polymerases (PARPs) are enzymes involved in DNA repair and other cellular processes.
- Small molecule inhibitors of PARP, such as OLAPARIB, are approved for treating certain cancers.
- Tankyrases (PARP 5) are a subclass of PARPs implicated in various diseases, including cancer, fibrosis, diabetes, and neurological disorders.
Purpose of the Study:
- To review the role of tankyrases in disease progression.
- To highlight the therapeutic potential of tankyrase inhibition.
- To discuss how tankyrase inhibition can address limitations of current cancer therapies.
Main Methods:
- Literature review of tankyrase function and inhibition.
- Analysis of tankyrase substrate proteins and their roles in disease.
- Exploration of tankyrase involvement in Wnt signaling pathways.
Main Results:
- Tankyrases contribute to hyperproliferative diseases by regulating key proteins like TRF1, AXIN, IRAP, and NuMa.
- Aberrant tankyrase activity is observed in cancer, fibrosis, and diabetes.
- Tankyrase inhibition shows potential in managing cancer, fibrosis, and diabetes.
Conclusions:
- Tankyrase inhibition represents a viable therapeutic strategy for hyperproliferative diseases and diabetes.
- Targeting tankyrases may overcome drug resistance and toxicity associated with current treatments.
- Further research into tankyrase inhibitors could lead to novel treatment options.
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