Studies on Methylpyrazole-Substituted Benzimidazoles to Target Helicobacter pylori Infection through HpIMPDH
Haritha Dilip1, Vijay Thiruvenkatam2, Sivapriya Kirubakaran1
1Department of Chemistry, Indian Institute of Technology Gandhinagar, Palaj, Gandhinagar, Gujarat 382055, India.
Abstract:
The prevalence of Helicobacter pylori infection has been increasing rapidly due to the genetic heterogeneity and antibacterial resistance shown by the bacteria, affecting over 50% of the world population and over 80% of the Indian population, in particular. In this regard, novel drug targets are currently being explored, one of which is the crucial metabolic enzyme inosine-5'-monophosphate dehydrogenase (IMPDH) involved in the de novo nucleotide biosynthesis pathway, in order to combat the infection and devise efficient therapeutic strategies. The present study reports the development of methylpyrazole-substituted benzimidazoles as small molecule inhibitors of H. pylori IMPDH with a nanomolar range of enzyme inhibition. A set of 19 small molecules have been designed, synthesized, and further evaluated for their inhibitory potential against H. pylori IMPDH using in silico, in vitro, biochemical, and biophysical techniques. Compound 7j was found to inhibit H. pylori IMPDH with an IC50 value of 0.095 ± 0.023 μM, which is close to 1.5-fold increase in the inhibitory activity, in comparison to the previously reported benzimidazole-based hit C91. Moreover, kinetic characterization has provided significant insights into the uncompetitive inhibition shown by these small molecules on H. pylori IMPDH, thus providing details about the enzyme inhibition mechanism. In conclusion, methylpyrazole-based small molecules indicate a promising path to develop cheap and bioavailable drugs to efficiently treat H. pylori infection in the coming years, in comparison to the currently available therapy.
Insights
New methylpyrazole-based benzimidazoles show potent inhibition of Helicobacter pylori IMPDH, offering a promising strategy for developing affordable and effective treatments against this widespread infection.
Area of Science:
- Medicinal Chemistry
- Biochemistry
- Drug Discovery
Background:
- Increasing prevalence of *Helicobacter pylori* infection globally, driven by genetic factors and antibiotic resistance.
- Need for novel therapeutic strategies targeting essential bacterial pathways.
- Inosine-5'-monophosphate dehydrogenase (IMPDH) identified as a key metabolic enzyme and potential drug target.
Purpose of the Study:
- To design, synthesize, and evaluate novel methylpyrazole-substituted benzimidazoles as inhibitors of *H. pylori* IMPDH.
- To explore new therapeutic avenues for combating *H. pylori* infections.
Main Methods:
- Computational (*in silico*) drug design and analysis.
- Chemical synthesis of 19 small molecule compounds.
- Enzyme inhibition assays (*in vitro*, biochemical, biophysical) to assess activity against *H. pylori* IMPDH.
- Kinetic characterization to elucidate the inhibition mechanism.
Main Results:
- Development of methylpyrazole-substituted benzimidazoles with nanomolar enzyme inhibition.
- Compound 7j demonstrated potent inhibition of *H. pylori* IMPDH with an IC50 of 0.095 ± 0.023 μM.
- Kinetic studies revealed an uncompetitive inhibition mechanism for the developed small molecules.
Conclusions:
- Methylpyrazole-based benzimidazoles represent a promising class of inhibitors for *H. pylori* IMPDH.
- These compounds offer potential for developing cost-effective and bioavailable drugs against *H. pylori* infection.
- The findings provide a foundation for future drug development targeting this crucial enzyme.
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