Focused On-demand Library for Small ribosomal subunit protein mS29

Focused On-demand Libraries - Receptor.AI Collaboration


Explore the Potential with AI-Driven Innovation

This comprehensive focused library is produced on demand with state-of-the-art virtual screening and parameter assessment technology driven by Receptor.AI drug discovery platform. This approach outperforms traditional methods and provides higher-quality compounds with superior activity, selectivity and safety.


We carefully select specific compounds from a vast collection of over 60 billion molecules in virtual chemical space. Reaxense helps in synthesizing and delivering these compounds.


In the library, a selection of top modulators is provided, each marked with 38 ADME-Tox and 32 parameters related to physicochemical properties and drug-likeness. Also, every compound comes with its best docking poses, affinity scores, and activity scores, providing a comprehensive overview.


Our top-notch dedicated system is used to design specialised libraries.


 

Fig. 1. The screening workflow of Receptor.AI

Our methodology leverages molecular simulations to examine a vast array of proteins, capturing their dynamics in both isolated forms and in complexes with other proteins. Through ensemble virtual screening, we thoroughly account for the protein's conformational mobility, identifying critical binding sites within functional regions and distant allosteric locations. This detailed exploration ensures that we comprehensively assess every possible mechanism of action, with the objective of identifying novel therapeutic targets and lead compounds that span a wide spectrum of biological functions.


Our library distinguishes itself through several key aspects:


  • The Receptor.AI platform integrates all available data about the target protein, including past experiments, literature data, known ligands, structural information and more. This consolidated approach maximises the probability of prioritising highly relevant compounds.

  • The platform uses sophisticated molecular simulations to identify possible binding sites so that the compounds in the focused library are suitable for discovering allosteric inhibitors and the binders for cryptic pockets.

  • The platform integrates over 50 highly customisable AI models, which are thoroughly tested and validated on a multitude of commercial drug discovery programs and research projects. It is designed to be efficient, reliable and accurate. All this power is utilised when producing the focused libraries.

  • In addition to producing the focused libraries, Receptor.AI provides services and end-to-end solutions at every stage of preclinical drug discovery. The pricing model is success-based, which reduces your risks and leverages the mutual benefits of the project's success.


PARTNER
Receptor.AI
 
UPACC
P51398

UPID:
RT29_HUMAN

ALTERNATIVE NAMES:
28S ribosomal protein S29, mitochondrial; Death-associated protein 3; Ionizing radiation resistance conferring protein

ALTERNATIVE UPACC:
P51398; B4DP59; B4DY62; E7EM60; Q13044; Q68CT7; Q96Q20

BACKGROUND:
Small ribosomal subunit protein mS29, recognized by its alternative names such as Death-associated protein 3 and Ionizing radiation resistance conferring protein, is pivotal in the process of interferon-gamma-induced cell death. This protein's function underscores its importance in the mitochondrial ribosomal machinery, crucial for synthesizing proteins and generating cellular energy.

THERAPEUTIC SIGNIFICANCE:
Exploring the functions of Small ribosomal subunit protein mS29 offers a promising avenue for developing novel therapeutic approaches. Given its critical role in cell death mechanisms, targeting this protein could provide insights into treatments for conditions characterized by abnormal cell death.

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