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@@ -49,7 +49,7 @@ running the model in zero-shot is that it doesn't require any further training.
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  ### **Example 1: Generating nitrilases (EC 3.5.5.1)**
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  The script below will be used for the generation of any BRENDA class in a zero-shot fashion,
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- here we showcase the generation of novel dehalogenases.
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  To run this script, you should download ZymCTRL to a local folder in your workstation.
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  Then replace the placeholders in the script with your actual folder path.
@@ -62,8 +62,8 @@ it will store the sequence's computed perplexity value. Perplexity is a measure
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  in that generation, with lower values being better. The sequences are ordered by perplexity before writing them out,
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  so those that finish in *_0.fasta and *_1.fasta will be the best ones per batch.
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- **Given that generation runs so fast, we recommend generating hundreds or thousands and then only picking the best 5%.
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- With the script below, that would mean picking only those that finish in '_0.fasta'**
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  ```
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  import torch
 
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  ### **Example 1: Generating nitrilases (EC 3.5.5.1)**
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  The script below will be used for the generation of any BRENDA class in a zero-shot fashion,
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+ here we showcase the generation of novel nitrilases.
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54
  To run this script, you should download ZymCTRL to a local folder in your workstation.
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  Then replace the placeholders in the script with your actual folder path.
 
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  in that generation, with lower values being better. The sequences are ordered by perplexity before writing them out,
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  so those that finish in *_0.fasta and *_1.fasta will be the best ones per batch.
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+ **Given that generation runs so fast, we recommend generating hundreds or thousands and then only picking the best 5% or less.
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+ With the script below, that would mean picking only those that finish in '_0.fasta'. Good perplexity values for this model so be below 1.75-1.5.**
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  ```
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  import torch