Focused On-demand Libraries - Receptor.AI Collaboration


Explore the Potential with AI-Driven Innovation

The focused library is created on demand with the latest virtual screening and parameter assessment technology, supported by the Receptor.AI drug discovery platform. This method is more effective than traditional methods and results in higher-quality compounds with better activity, selectivity, and safety.


From a virtual chemical space containing more than 60 billion molecules, we precisely choose certain compounds. Reaxense aids in their synthesis and provision.


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.


Our top-notch dedicated system is used to design specialised 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 is unique due to several crucial aspects:


  • Receptor.AI compiles all relevant data on the target protein, such as past experimental results, literature findings, known ligands, and structural data, thereby enhancing the likelihood of focusing on the most significant compounds.

  • By utilizing advanced molecular simulations, the platform is adept at locating potential binding sites, rendering the compounds in the focused library well-suited for unearthing allosteric inhibitors and binders for hidden pockets.

  • The platform is supported by more than 50 highly specialized AI models, all of which have been rigorously tested and validated in diverse drug discovery and research programs. Its design emphasizes efficiency, reliability, and accuracy, crucial for producing focused libraries.

  • Receptor.AI extends beyond just creating focused libraries; it offers a complete spectrum of services and solutions during the preclinical drug discovery phase, with a success-dependent pricing strategy that reduces risk and fosters shared success in the project.


PARTNER
Receptor.AI
 
UPACC
P12882

UPID:
MYH1_HUMAN

ALTERNATIVE NAMES:
Myosin heavy chain 1; Myosin heavy chain 2x; Myosin heavy chain IIx/d; Myosin heavy chain, skeletal muscle, adult 1

ALTERNATIVE UPACC:
P12882; Q14CA4; Q9Y622

BACKGROUND:
The protein Myosin-1, with its alternative names including Myosin heavy chain, skeletal muscle, adult 1, is integral to the process of muscle contraction. It belongs to a family of motor proteins that are fundamental for muscle movement and strength, playing a crucial role in the conversion of ATP into mechanical energy.

THERAPEUTIC SIGNIFICANCE:
Understanding the role of Myosin-1 could open doors to potential therapeutic strategies. Given its essential function in muscle dynamics, Myosin-1 presents a significant opportunity for the development of therapeutic interventions targeting muscle disorders. Investigating this protein's activity could lead to breakthroughs in treatments for enhancing muscle performance and treating muscle-related conditions.

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