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January 22, 2026Protein Science11 citationsOpen Access

Evaluating zero‐shot prediction of monomeric protein design success by AlphaFold , ESMFold , and ProteinMPNN

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MGMario GarciaNorthwestern UniversitySDSugyan M. DixitNorthwestern UniversityGRGabriel J. RocklinNorthwestern University

Key Points

  • This research aims to determine how effectively AlphaFold, ESMFold, and ProteinMPNN can predict successful de novo designed proteins.
  • Curated a benchmark dataset of 614 characterized de novo designed monomers from 11 design studies.
  • Evaluated predictive models' ability to discriminate between successful and unsuccessful protein designs.
  • Assessed confidence metrics and their relationship to structural topology.
  • All models showed moderate ability to distinguish successful from unsuccessful designs.
  • Some failed designs had better confidence scores than some successful ones.
  • ESMFold's pLDDT performed best among the evaluated models, although the overall accuracy of success prediction was limited.

Abstract

Abstract De novo protein design has enabled the creation of proteins with diverse functionalities that are not found in nature. Despite recent advances, experimental success rates remain inconsistent and context‐dependent, posing a bottleneck for broader applications of de novo design. To overcome this, structure and sequence prediction models have been applied to assess design quality prior to experimental testing to save time and resources. In this study, we examined the extent to which AlphaFold, Protein MPNN, and ESMFold can discriminate between experimentally successful and unsuccessful designs. We first curated a benchmark dataset of 614 experimentally characterized de novo designed monomers from 11 different design studies between 2012 and 2021. All predictive models demonstrated moderate ability to discriminate experimental successes (expressed, soluble, monomeric, and fold with the correct secondary structure) from failures. Still, many failed designs have better confidence metrics than successful designs, and confidence metrics were topology‐dependent. Among all computational models evaluated, ESMFold average predicted local‐distance difference test (pLDDT) yielded the best individual performance at distinguishing between successful and unsuccessful designs. A logistic regression model combining all confidence metrics provided only modest improvement over ESMFold pLDDT alone. Overall, these results show that these models can serve as an initial filtering strategy prior to experimental validation; however, their utility at accurately predicting experimentally successful designs remains limited without task‐specific training.

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Cite This Study

Garcia et al. (2026) studied this question.

synapsesocial.com/papers/6971be10642b1836717e2b39https://doi.org/10.1002/pro.70453
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