AIでRNAアプタマー創薬を効率化する技術「RaptScore」を開発~任意のRNAアプタマーの結合活性を評価する技術で創薬を加速~

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2026-01-16 早稲田大学

早稲田大学とリボミックの研究グループは、RNAアプタマー創薬を効率化するAI評価技術「RaptScore」を開発した。大規模言語モデル(LLM)を用い、少数の実験データから任意のRNAアプタマー配列の結合活性を高精度に予測できる点が特長である。従来法では困難だった未知配列や配列長の異なるアプタマーの評価、医薬品化に重要な短鎖化設計を計算機上で可能にした。SPR実験との高い相関が示され、生成AI「RaptGen」との連携により有望候補の選抜も効率化できる。本技術は創薬コスト削減、開発期間短縮、品質向上に貢献し、RNAアプタマー医薬の実用化加速が期待される。

AIでRNAアプタマー創薬を効率化する技術「RaptScore」を開発~任意のRNAアプタマーの結合活性を評価する技術で創薬を加速~

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RaptScore:汎用的なアプタマー評価のための大規模言語モデルベースのアルゴリズム RaptScore: a large language model-based algorithm for versatile aptamer evaluation

Akira Kimura-Yamazaki ,Tatsuo Adachi ,Shigetaka Nakamura ,Yoshikazu Nakamura ,Michiaki Hamada
Nucleic Acids Research  Published:14 January 2026
DOI:https://doi.org/10.1093/nar/gkaf1480

Abstract

RNA aptamers are a high-potency tool in the life sciences, offering promising applications in drug discovery and beyond. They are typically obtained through systematic evolution of ligands by exponential enrichment (SELEX), which imposes constraints on sequence length and diversity. Several metrics, such as frequency and enrichment, have been developed to identify high-activity aptamers from SELEX. However, existing evaluation metrics are limited to sequences that appear within SELEX and cannot assess sequences of varying lengths, limiting their utility in optimizing aptamer design. To overcome these limitations, we developed RaptScore, a novel binding activity evaluation metric leveraging large language models. RaptScore enables the assessment of arbitrary sequences, including those absent from SELEX, and accommodates variations in sequence length. RaptScore exhibited a strong correlation with binding activity, allowing the identification of shorter aptamers with enhanced binding properties. By integrating RaptScore with in silico maturation, we achieved a 10-nucleotide truncation while maintaining binding efficiency. Furthermore, we demonstrated improved aptamer discovery efficiency by combining RaptScore with RaptGen, a variational autoencoder-based aptamer discovery tool. By enabling efficient sequence evaluation and optimization, RaptScore provides a powerful tool for aptamer research, facilitating the discovery of high-activity candidates while reducing experimental effort.

細胞遺伝子工学
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