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Predicting the impact of rare variants on RNA splicing in CAGI6

Jenny Lord; Carolina Jaramillo Oquendo; Htoo A. Wai; Andrew G. L. Douglas; David J. Bunyan; Yaqiong Wang; Zhiqiang Hu; Zishuo Zeng; Daniel Danis; Panagiotis Katsonis; Amanda Williams; Olivier Lichtarge; Yuchen Chang; Richard D. Bagnall; Stephen M. Mount; Brynja Matthiasardottir; Chiaofeng Lin; Thomas van Overeem Hansen; Raphael Leman; Alexandra Martins; Claude Houdayer; Sophie Krieger; Constantina Bakolitsa; Yisu Peng; Akash Kamandula; Predrag Radivojac; Diana Baralle
Human Genetics · Vol. 144, Issue 2-3 · pp. 243-251 · 2025

Abstract

Variants which disrupt splicing are a frequent cause of rare disease that have been under-ascertained clinically. Accurate and efficient methods to predict a variant’s impact on splicing are needed to interpret the growing number of variants of unknown significance (VUS) identified by exome and genome sequencing. Here, we present the results of the CAGI6 Splicing VUS challenge, which invited predictions of the splicing impact of 56 variants ascertained clinically and functionally validated to determine splicing impact. The performance of 12 prediction methods, along with SpliceAI and CADD, was compared on the 56 functionally validated variants. The maximum accuracy achieved was 82% from two different approaches, one weighting SpliceAI scores by minor allele frequency, and one applying the recently published Splicing Prediction Pipeline (SPiP). SPiP performed optimally in terms of sensitivity, while an ensemble method combining multiple prediction tools and information from databases exceeded all others for specificity. Several challenge methods equalled or exceeded the performance of SpliceAI, with ultimate choice of prediction method likely to depend on experimental or clinical aims. One quarter of the variants were incorrectly predicted by at least 50% of the methods, highlighting the need for further improvements to splicing prediction methods for successful clinical application.

Bibliographic Information

JournalHuman Genetics
PublisherSpringer
Publication Date2025-03-01
Publication Year2025
Volume144
Issue2-3
Pages243-251
Document TypeJournal Article
Print ISSN0340-6717
eISSN1432-1203
DOI10.1007/s00439-023-02624-3

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NARA Access Coverage1964-01-01~Current
Journal Homepagehttps://www.springer.com/journal/439
Publisher PageOpen Publisher Page
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