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Cradle

What is Cradle?

Cradle revolutionizes the field of biology by empowering biologists to swiftly create enhanced proteins with unprecedented speed, thanks to its cutting-edge prediction algorithms and AI-driven design suggestions.

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What is Cradle?

Cradle is a platform that helps biologists design improved proteins in record time using powerful prediction algorithms and AI design suggestions. It is an AI tool that offers high throughput screening and a user-friendly AI-assisted design tool to generate new sequences and optimize codons.
The platform utilizes machine learning algorithms trained on real data to provide a list of possible sequences that can create a desired protein structure. Cradle’s goal is to make programming biology easy by providing biologists with the tools to discover, design, and optimize enzymes and cell-factories.

How to use Cradle?

To use Cradle, biologists can sign up for early access on the website. Once they have access, they can input their protein sequences and Cradle will provide visualization, analysis, and prediction of the protein’s potential. Biologists can then use this information to design better proteins. Cradle also offers features like training the AI with wet lab results, generating quality candidates in just one click, and using AI-assisted design tools for tasks like predicting protein structures, optimizing thermostability, and codon optimization. The platform is designed to keep sequence data private and secure, ensuring full ownership of intellectual property.

Cradle’s Core Features:

Cradle offers the following core features:

  • Visualization, analysis, and prediction of protein potential.
  • Training the AI with wet lab results to improve candidates.
  • Generating quality candidates in just one click.
  • AI-assisted design tools for tasks like predicting protein structures, optimizing thermostability, and codon optimization.
  • Private and secure data storage.
  • Full ownership of intellectual property.

Use Cases:

Cradle can be used for various purposes in protein design and optimization. Some of its use cases include:

  1. Designing improved proteins.
  2. Optimizing protein thermostability.
  3. Optimizing protein codons for better expression.
  4. Improving protein stability in solvents.
  5. Increasing protein activity and specificity.
  6. Enhancing protein affinity for better protein-protein interactions.
  7. Optimizing multiple phenotypes simultaneously.

These use cases demonstrate the versatility of Cradle in assisting biologists with protein design and optimization.
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