scispace - formally typeset
Journal ArticleDOI

Influence of Amino Acid Mutations and Small Molecules on Targeted Inhibition of Proteins Involved in Cancer.

TLDR
Understanding and bridging mutations and altered PPIs will provide insights into the alarming signals leading to massive malfunctioning of a biological system in various diseases.
Abstract
Background Protein-protein interactions (PPIs) are of crucial importance in regulating the biological processes of cells both in normal and diseased conditions. Significant progress has been made in targeting PPIs using small molecules and achieved promising results. However, PPI drug discovery should be further accelerated with better understanding of chemical space along with various functional aspects. Objective In this review, we focus on the advancements in computational research for targeted inhibition of protein-protein interactions involved in cancer. Methods Here, we mainly focused on two aspects: (i) understanding the key roles of amino acid mutations in epidermal growth factor receptor (EGFR) as well as mutation-specific inhibitors and (ii) design of small molecule inhibitors for Bcl-2 to disrupt PPIs. Results The paradigm of PPI inhibition to date reflect the certainty that inclination towards novel and versatile strategies enormously dictate the success of PPI inhibition. As the chemical space highly differs from the normal drug like compounds the lead optimization process has to be given the utmost priority to ensure the clinical success. Here, we provided a broader perspective on effect of mutations in oncogene EGFR connected to Bcl-2 PPIs and focused on the potential challenges. Conclusion Understanding and bridging mutations and altered PPIs will provide insights into the alarming signals leading to massive malfunctioning of a biological system in various diseases. Finding rational elucidations from a pharmaceutical stand point will presumably broaden the horizons in future.

read more

Citations
More filters
Journal ArticleDOI

Current progress and future perspectives of polypharmacology : From the view of non-small cell lung cancer

TL;DR: Drug repositioning introduces an affordable and efficient strategy to discover novel drug action, especially when integrated with recent systems biology driven stratagem, in combination with conventional anticancer agents to combat drug resistance in the near future.
Journal ArticleDOI

Forging New Scaffolds from Old: Combining Scaffold Hopping and Hierarchical Virtual Screening for Identifying Novel Bcl-2 Inhibitors.

TL;DR: A novel attempt in terms of blending scaffold hopping and hierarchical virtual screening in order to assess the hybrid method for its efficacy in identifying active lead molecules for emerging PPI target Bcl-2 (B-cell Lymphoma 2).
References
More filters
Journal ArticleDOI

Evaluation of fluorescence-based thermal shift assays for hit identification in drug discovery.

TL;DR: It is reported that the thermal shift assay can be conducted in an inexpensive, commercially available device for temperature control and fluorescence detection and the binding affinities obtained are compared with isothermal titration calorimetry and with the IC(50) values from enzymatic assays.
Journal ArticleDOI

BCL-2 family antagonists for cancer therapy

TL;DR: Preclinical and clinical data on several compounds that inhibit the interaction between BCL-2 family members and their natural ligand, a helical peptide sequence known as the BH3 domain are reviewed, and four criteria that define antagonists of the B CL-2 protein family are recommended.
Journal ArticleDOI

Principles of Protein−Protein Interactions: What are the Preferred Ways For Proteins To Interact?

TL;DR: This work aims to demonstrate the efforts towards in-situ applicability of EMMARM, which aims to provide real-time information about the response of the immune system to EMTs.
Journal ArticleDOI

High-throughput crystallography for lead discovery in drug design.

TL;DR: How significant advances in process automation and informatics have aided the development of high-throughput X-ray crystallography is described, and the use of this technique for structure-based lead discovery is discussed.
Journal ArticleDOI

Structure-Based Design of Inhibitors of Protein-Protein Interactions: Mimicking Peptide Binding Epitopes

TL;DR: A new classification of peptidomimetics (classes A–D) is introduced that enables a clear assignment of available approaches for the structure-based design of PPI inhibitors through stabilizing or mimicking turns, β-sheets, and helices.
Related Papers (5)