Focused On-demand Libraries - Receptor.AI Collaboration


Explore the Potential with AI-Driven Innovation

This extensive focused library is tailor-made using the latest virtual screening and parameter assessment technology, operated by the Receptor.AI drug discovery platform. This technique is more effective than traditional methods, offering compounds with improved activity, selectivity, and safety.


We pick out particular compounds from an extensive virtual database of more than 60 billion molecules. The preparation and shipment of these compounds are facilitated by Reaxense.


The library features a range of promising modulators, each detailed with 38 ADME-Tox and 32 physicochemical and drug-likeness parameters. Plus, each compound is presented with its ideal docking poses, affinity scores, and activity scores, ensuring a thorough insight.


We use our state-of-the-art dedicated workflow for designing focused libraries.


 

Fig. 1. The screening workflow of Receptor.AI

Our strategy employs molecular simulations to explore an extensive range of proteins, capturing their dynamics both individually and within complexes with other proteins. Through ensemble virtual screening, we address proteins' conformational mobility, uncovering key binding sites at both functional regions and remote allosteric locations. This comprehensive investigation ensures a thorough assessment of all potential mechanisms of action, with the goal of discovering innovative therapeutic targets and lead molecules across across diverse biological functions.


Several key aspects differentiate our library:


  • Receptor.AI compiles an all-encompassing dataset on the target protein, including historical experiments, literature data, known ligands, and structural insights, maximising the chances of prioritising the most pertinent compounds.

  • The platform employs state-of-the-art molecular simulations to identify potential binding sites, ensuring the focused library is primed for discovering allosteric inhibitors and binders of concealed pockets.

  • Over 50 customisable AI models, thoroughly evaluated in various drug discovery endeavours and research projects, make Receptor.AI both efficient and accurate. This technology is integral to the development of our focused libraries.

  • In addition to generating focused libraries, Receptor.AI offers a full range of services and solutions for every step of preclinical drug discovery, with a pricing model based on success, thereby reducing risk and promoting joint project success.


PARTNER
Receptor.AI
 
UPACC
P62701

UPID:
RS4X_HUMAN

ALTERNATIVE NAMES:
40S ribosomal protein S4; SCR10; Single copy abundant mRNA protein

ALTERNATIVE UPACC:
P62701; P12631; P12750; P27576; P55831; Q14727; Q6IPY4

BACKGROUND:
The protein known as Small ribosomal subunit protein eS4, X isoform, or SCR10, is integral to the ribosome's small subunit. It assists in the synthesis of proteins, a vital cellular process. This protein's function extends to the assembly of the SSU processome in the nucleolus, where it aids in RNA folding, modifications, and cleavage, ensuring the efficient production of ribosomal subunits.

THERAPEUTIC SIGNIFICANCE:
Exploring the functions of Small ribosomal subunit protein eS4, X isoform offers a promising pathway to identifying new therapeutic approaches. Given its central role in protein synthesis and ribosome assembly, targeting this protein could lead to breakthroughs in treating conditions linked to anomalies in these processes.

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