Englander Institute for Precision Medicine

Spatial isoform sequencing at single-cell resolution reveals cell-type-specific spatial isoform variability in multiple brain cell types.

TitleSpatial isoform sequencing at single-cell resolution reveals cell-type-specific spatial isoform variability in multiple brain cell types.
Publication TypeJournal Article
Year of Publication2026
AuthorsMichielsen L, Prjibelski AD, Foord C, Spiegelman Y, Kim T, Hu W, Jarroux J, Hsu J, Pfeil R, Zhang X, Gan L, Tomescu AI, Hajirasouliha I, Tilgner HU
JournalNat Methods
Volume23
Issue9
Pagination1869-1881
Date Published2026 Sep
ISSN1548-7105
KeywordsAnimals, Brain, Mice, Neurons, Protein Isoforms, Single-Cell Analysis, Single-Cell Gene Expression Analysis, Software
Abstract

Spatial long-read technologies are increasingly common but usually lack single-cell resolution. This leaves unanswered whether spatially variable isoforms reflect variability within one cell type or differences in region-specific cell-type composition. Here, we developed Spl-ISO-Seq2 (500-nm resolution) and accompanying software, Spl-IsoQuant-2 and Spl-IsoFind, enabling long-read sequencing of >450 million barcodes versus 80,000 previously. Applying this to the adult mouse brain, we compared differential isoform abundance between known regions and spatial isoform patterns independent of predefined regions. Both identified overlapping hits, for example, Rps24 in oligodendrocytes. For known Snap25 spatial isoform variation, we show that it occurs in excitatory neurons. The region-agnostic approach also uncovered patterns missed by region-based comparisons, for example, for Ighm. Notably, many spatial isoform signals are not driven by cell-type composition alone. Finally, our software is applicable to many spatial and single-cell protocols, demonstrating reproducibility between platforms (for example, Visium HD/Stereo-seq). Overall, our experimental/analytical methods enable a submicron-resolution-isoform view and open avenues for spatial isoform disease research.

DOI10.1038/s41592-026-03211-w
Alternate JournalNat Methods
PubMed ID42697995
PubMed Central IDPMC13545012
Grant ListMIRA R35 GM152101-01 / / U.S. Department of Health & Human Services | NIH | National Institute of General Medical Sciences (NIGMS) /
R35 GM152101 / GM / NIGMS NIH HHS / United States
U01 DA053625-01 / / U.S. Department of Health & Human Services | NIH | National Institute on Drug Abuse (NIDA) /
U01 DA053625 / DA / NIDA NIH HHS / United States
2T32DA039080 / / U.S. Department of Health & Human Services | NIH | National Institute on Drug Abuse (NIDA) /
T32 DA039080 / DA / NIDA NIH HHS / United States
RF1 MH121267 / MH / NIMH NIH HHS / United States
Brain Initiative grant 1RF1MH121267-01 / / U.S. Department of Health & Human Services | NIH | Center for Information Technology (Center for Information Technology, National Institutes of Health) /
MIRA R35 GM138152 / / U.S. Department of Health & Human Services | NIH | National Institute of General Medical Sciences (NIGMS) /
R35 GM138152 / GM / NIGMS NIH HHS / United States
GRFP # 2139291 / / National Science Foundation (NSF) /

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