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 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 high-tech, dedicated method is applied to construct targeted 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.


Key features that set our library apart include:


  • The Receptor.AI platform integrates extensive information about the target protein, such as historical experiments, academic research, known ligands, and structural insights, thereby increasing the likelihood of identifying highly relevant compounds.

  • The platform’s sophisticated molecular simulations are designed to discover potential binding sites, ensuring that our focused library is optimal for the discovery of allosteric inhibitors and binders for cryptic pockets.

  • With over 50 customisable AI models, verified through extensive testing in commercial drug discovery and research, Receptor.AI is efficient, reliable, and precise. These models are essential in the production of our focused libraries.

  • Receptor.AI not only produces focused libraries but also provides full services and solutions at every stage of preclinical drug discovery, with a success-based pricing structure that aligns our interests with the success of your project.


PARTNER
Receptor.AI
 
UPACC
P60002

UPID:
ELOF1_HUMAN

ALTERNATIVE NAMES:
-

ALTERNATIVE UPACC:
P60002; Q8R1J7; Q96II4

BACKGROUND:
The Transcription elongation factor 1 homolog is implicated in maintaining the integrity of chromatin structure in regions of active transcription. By facilitating the proper organization of chromatin, this protein ensures that transcription processes proceed efficiently, underscoring its essential role in gene expression. The dynamic regulation of chromatin structure by this elongation factor is crucial for the accurate transcription of genetic information.

THERAPEUTIC SIGNIFICANCE:
Exploring the function of Transcription elongation factor 1 homolog offers a pathway to novel therapeutic interventions. Given its significant role in the regulation of chromatin structure and gene expression, targeting this protein could provide a means to modulate aberrant gene expression patterns associated with various diseases. The potential to influence transcription elongation processes presents an exciting avenue for the development of innovative treatments, even though specific disease associations are not yet identified.

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