Focused On-demand Libraries - Receptor.AI Collaboration


Explore the Potential with AI-Driven Innovation

The specialised, focused library is developed on demand with the most recent virtual screening and parameter assessment technology, guided by the Receptor.AI drug discovery platform. This approach exceeds the capabilities of traditional methods and offers compounds with higher activity, selectivity, and safety.


Our selection of compounds is from a large virtual library of over 60 billion molecules. The production and distribution of these compounds are managed by Reaxense.


Contained in the library are leading modulators, each labelled with 38 ADME-Tox and 32 physicochemical and drug-likeness qualities. In addition, each compound is illustrated with its optimal docking poses, affinity scores, and activity scores, giving a complete picture.


We employ our advanced, specialised process to create targeted libraries.


 

Fig. 1. The screening workflow of Receptor.AI

Our methodology employs molecular simulations to explore a wide array of proteins, capturing their dynamic states both individually and within complexes. Through ensemble virtual screening, we address conformational mobility, uncovering binding sites within functional regions and remote allosteric locations. This thorough exploration ensures no potential mechanism of action is overlooked, aiming to discover novel therapeutic targets and lead compounds across an extensive spectrum of biological functions.


Our library stands out due to several important features:


  • The Receptor.AI platform compiles comprehensive data on the target protein, encompassing previous experiments, literature, known ligands, structural details, and more, leading to a higher chance of selecting the most relevant compounds.

  • Advanced molecular simulations on the platform help pinpoint potential binding sites, making the compounds in our focused library ideal for finding allosteric inhibitors and targeting cryptic pockets.

  • Receptor.AI boasts over 50 tailor-made AI models, rigorously tested and proven in various drug discovery projects and research initiatives. They are crafted for efficacy, dependability, and precision, all of which are key in creating our focused libraries.

  • Beyond creating focused libraries, Receptor.AI offers comprehensive services and complete solutions throughout the preclinical drug discovery phase. Our success-based pricing model minimises risk and maximises the mutual benefits of the project's success.


PARTNER
Receptor.AI
 
UPACC
Q15051

UPID:
IQCB1_HUMAN

ALTERNATIVE NAMES:
Nephrocystin-5; p53 and DNA damage-regulated IQ motif protein

ALTERNATIVE UPACC:
Q15051; Q3KS08; Q3KS09; Q5DKQ7; Q8NI79; Q9BS08

BACKGROUND:
Nephrocystin-5, known for its pivotal role in early cilia formation, is essential for the integrity of the BBSome complex. This protein's association with CEP290/NPHP6 underscores its significance in ciliogenesis and in the ciliary targeting of specific cargos.

THERAPEUTIC SIGNIFICANCE:
Given its critical role in diseases such as Senior-Loken syndrome 5 and Leber congenital amaurosis 10, targeting IQ calmodulin-binding motif-containing protein 1 presents a promising avenue for therapeutic intervention. The exploration of this protein's functions could lead to breakthroughs in treating these complex disorders.

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