AI-Driven Enzyme Engineering Services for Industrial Biotechnology, Biopharma, Food Technology, and Synthetic Biology

AI-Driven Enzyme Engineering Services

Engineering enzymes with improved performance requires balancing catalytic activity, stability, substrate specificity, manufacturability, and production efficiency. Traditional directed evolution often requires constructing and screening thousands of variants, making enzyme optimization both time-consuming and resource-intensive.

Neoncorte Bio provides AI-driven enzyme engineering services that combine computational biology, machine learning, structural biology, and protein engineering to accelerate enzyme optimization while reducing experimental effort.

Our computational workflows help biotechnology companies, pharmaceutical organizations, industrial manufacturers, food technology companies, and synthetic biology teams identify promising enzyme variants before laboratory validation.

Enzyme Engineering Services

Our Enzyme Engineering Services

  • Enzyme Engineering Services
    Computational Enzyme Design
    Identify rational engineering opportunities using protein sequence analysis, structural information, and AI-guided prediction.
  • Enzyme Engineering Services
    Computational Mutagenesis
    Evaluate single and multiple mutations computationally to guide focused engineering strategies.
  • Enzyme Engineering Services
    Virtual Deep Mutational Scanning
    Explore millions of potential variants computationally to identify promising mutation combinations.
  • Enzyme Engineering Services
    Smart Library Design
    Create focused mutation libraries that maximize engineering efficiency while minimizing experimental screening.
  • Enzyme Engineering Services
    Multi-Parameter Optimization
    Simultaneously optimize multiple enzyme characteristics, including activity, stability, specificity, expression, and manufacturability.
  • Enzyme Engineering Services
    Design-Build-Test-Learn (DBTL) Support
    Integrate computational predictions with experimental data to continuously improve engineering performance.

Engineering Objectives

Our enzyme engineering services help optimize:

  • Catalytic activity
  • Catalytic efficiency (kcat/KM)
  • Thermostability
  • Melting temperature (Tm)
  • Protein stability
  • pH stability
  • Solvent tolerance
  • Oxidative stability
  • Freeze-thaw stability
  • Aggregation resistance
  • Expression yield
  • Protein solubility
  • Manufacturability
  • Cofactor specificity
  • Substrate specificity
  • Enantioselectivity
  • Regioselectivity
  • Product selectivity
  • Multi-objective optimization
Every project is tailored to the target enzyme, available data, and commercial objectives..

AI Technologies Behind Our Services

Neoncorte Bio combines multiple computational technologies to accelerate enzyme engineering:
  • Protein language models (PLMs)
  • Computational protein engineering
  • Structural biology
  • Zero-shot mutation prediction
  • Computational mutagenesis
  • Virtual Deep Mutational Scanning
  • Protein fitness landscape prediction
  • Epistasis prediction
  • Higher-order mutation prediction
  • Active learning
  • Bayesian optimization
  • Multi-objective optimization
These AI-assisted methods complement laboratory experiments and support data-driven engineering decisions.

Enzyme Types We Support

Our services are applicable to a wide range of enzymes, including:

  • Amylases
  • Lipases
  • Proteases
  • Cellulases
  • Xylanases
  • Laccases
  • Peroxidases
  • Glucose oxidases
  • Alcohol dehydrogenases
  • Ketoreductases (KREDs)
  • Transaminases
  • Nitrilases
  • Monooxygenases
  • Esterases
  • Oxidoreductases
  • Hydrolases
  • Transferases
  • Lyases
  • Isomerases
  • Ligases

Industries We Support

Enzyme Engineering Services
  • Industrial Biotechnology

    Engineer enzymes for sustainable manufacturing and industrial biocatalysis.
  • Pharmaceutical Manufacturing

    Optimize enzymes for API synthesis, green chemistry, and biocatalytic production.
  • Synthetic Biology

    Optimize enzymes for metabolic engineering and engineered microbial systems.
  • Food & Beverage

    Develop enzymes for baking, brewing, dairy processing, fermentation, and food ingredient production.
  • Environmental Biotechnology

    Engineer enzymes for recycling, biodegradation, wastewater treatment, and pollutant remediation.
Enzyme Engineering Services

Design-Build-Test-Learn (DBTL) Collaboration

Our services integrate computational prediction with laboratory experimentation through an iterative DBTL framework.

Design
Analyze sequences, structures, and engineering objectives.
Build
Prioritize mutations and focused variant libraries.
Test
Evaluate engineered variants experimentally.
Learn
Improve predictive models using newly generated experimental data.

Each cycle improves engineering accuracy while reducing unnecessary laboratory work.
enzyme engineering services dbtl cycle

Why Choose Neoncorte Bio?

Our enzyme engineering services combine expertise in:
  • Artificial intelligence
  • Machine learning
  • Protein engineering
  • Computational biology
  • Protein language models
  • Structural biology
  • Computational mutagenesis
  • Deep Mutational Scanning (DMS)
  • Protein fitness landscape prediction
  • Active learning
  • Bayesian optimization
  • Multi-parameter optimization
  • Design-Build-Test-Learn (DBTL)
This integrated approach enables more efficient enzyme optimization across industrial and therapeutic applications.

Who We Work With

We collaborate with:

  • Biotechnology companies
  • Industrial enzyme manufacturers
  • Pharmaceutical companies
  • Synthetic biology startups
  • Food technology companies
  • Environmental biotechnology companies
  • CROs and CDMOs
  • Academic research institutions
Frequently Asked Questions (FAQs)
Neoncorte Bio
Where AI Meets Biotechnology
Neoncorte Bio is at the forefront of the convergence between artificial intelligence and enzyme engineering. Our team comprises experts in computational biology, bioinformatics, and machine learning, all driven by a mission to accelerate innovation in enzyme design. By leveraging our advanced AI models, we provide unparalleled solutions that enhance efficiency, reduce costs, and push the boundaries of what's possible in enzyme engineering
Proud Member of Leading Global AI Programs
Neoncorte Bio is part of the NVIDIA Inception and Nebius for Startups programs — two of the world’s leading ecosystems for high-performance AI innovation. These partnerships strengthen our ability to deliver next-generation AI-driven protein, enzyme, and aptamer engineering.
  • NVIDIA Inception Neoncorte Bio AI life sciences company
    As a member of NVIDIA Inception, Neoncorte Bio gains access to cutting-edge GPU technologies, expert guidance, and a global AI ecosystem that supports companies from prototype to production. The program empowers us to explore new AI opportunities and build high-performance biological design pipelines powered by NVIDIA’s world-class platform.
  • Nebius AI life sciences Neoncorte Bio
    Through Nebius for Startups, we gain access to high-performance compute infrastructure optimized for large-scale AI workloads, along with hands-on technical guidance and a strong community of innovative AI companies. Nebius enables us to train and deploy complex biological models more efficiently — accelerating enzyme, protein, and aptamer design while supporting rapid scaling of our R&D pipelines.
Publications
Scientific Publication of Neoncorte Bio Team
  • Modification of natural enzymes to introduce new properties and enhance existing ones is a central challenge in bioengineering. This study is focused on the development of Taq polymerase mutants that show enhanced reverse transcriptase (RTase) activity while retaining other desirable properties such as fidelity, 5′-3′ exonuclease activity, effective deoxyuracil incorporation, and tolerance to locked nucleic acid (LNA)-containing substrates.
  • The transcriptomic data are being frequently used in the research of biomarker genes of different diseases and biological states. The most common tasks there are the data harmonization and treatment outcome prediction. Both of them can be addressed via the style transfer approach. Either technical factors or any biological details about the samples which we would like to control (gender, biological state, treatment, etc.) can be used as style components.
  • List of all Neoncorte Bio publications dedicated to Molecular Biology, Biotechnology, Artificial Intelligence and Artificial Neural Networks, published mostly by Nikolay Russkikh, CEO of Neoncorte Bio

Our Expertise in Action
With extensive experience in AI applications and software engineering tailored to the life sciences, we specialize in solving complex challenges and delivering innovative solutions for our customers. Our work demonstrates a deep understanding of cutting-edge technologies and their application in the real world.
Here are examples of the types of projects we have successfully delivered:
  • Automated NGS Data Analysis:
    Designed a production-grade solution for the automated processing, annotation, and analysis of Next-Generation Sequencing (NGS) data.
  • Single-Cell Data Integration:
    Built state-of-the-art tools for integrating multimodal single-cell data, achieving recognition for technical excellence.
  • Metagenomic Classification Algorithms:
    Developed advanced methods for classifying sequencing reads in metagenomics research.
  • High-Throughput Image Processing Pipelines:
    Engineered an efficient pipeline to process millions of sequencing images with exceptional accuracy.
  • Cell Counting via AI:
    Created a computer vision solution for precise cell counting in microphotography images, streamlining data analysis.
Get in touch with our team
Phone: +1-503-754-3958
Email: contact@neoncorte.com