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ISP Platform powered by Geneformer: Framework for Cross-Species, Sequential, and Multi-Gene In Silico Perturbation Screens with Application to iPS Cell State Transitions

Y. Sanaki, S. Shigenobu, R. Niwa

Preprint

En palabras de los autores

In silico perturbation (ISP) enables virtual genetic screens, prioritizing candidate regulators before costly wet-lab experiments. However, applying foundation models requires programming expertise. Here, we present the ISP Platform, that automates ISP powered by Geneformer without code execution. The platform enables cross-species analyses by independently selecting input species and human or mouse Geneformer models. The platform also implements sequential multi-gene ISP, in which each perturbation chains from the cell state produced by the preceding step. Using induced pluripotent stem cell (iPSC) datasets, the platform successfully performed cross-species analysis of human and mouse single cell-RNA (scRNA)-seq data. Screening all 24 permutations of the Yamanaka factors identified an optimal overexpression sequence that produced the highest shift toward the pluripotent state. Genome-wide knockdown screens prioritized key pluripotency regulators but revealed an asymmetric cross-species concordance. The human model effectively captured mouse pluripotency programs, whereas applying the mouse model to human cells yielded predominantly translation-related terms. Furthermore, a targeted pairwise overexpression screen nominated candidate modulators of the primed-to-naive transition beyond the conventional NANOG and KLF2 benchmark. Together, the ISP Platform provides a unified, accessible framework for three dimensions of in silico perturbation (cross-species, sequential, and multi-gene) to guide focused experimental validation and reduce exploratory animal use.

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Apareció: viernes, 25 de septiembre. bioRxiv. Preprint, todavía sin revisión por pares.

DOI: 10.64898/2026.09.17.752497