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Biology subjects

Osuna Lopez, M.

Publications and source records attributed to Osuna Lopez, M..

2 recordsLinked to original sources

Single-Cell Mapping of tRNA Expression Dynamics Across Human Hematopoiesis

How transfer RNA (tRNA) expression changes as hematopoietic stem cells are specified into human blood cell types remains unknown. tRNAs translate the 64-codon genetic code into the 21-amino acid protein code, and their relative abundance can influence proteomic output. Here, we introduce simultaneous single-cell tRNA and mRNA sequencing (sc-STM-seq), a scalable, high-throughput approach for profiling tRNAs alongside mRNA transcriptomes in individual cells. Applying sc-STM-seq to human bone marrow, we map tRNA expression and splicing across hematopoietic differentiation trajectories and identify tRNAs associated with stemness, differentiation, and specific cell lineages. Our study provides an atlas of the hematopoietic tRNA landscape and establishes tRNA expression as a previously underappreciated layer of cellular heterogeneity during human blood cell development.

cell biology↗

Direct detection of CRISPR mutations and transcriptional responses at single cell resolution in vivo

CRISPR screens coupled with single-cell RNA sequencing are transforming high-throughput functional genomics. However, applications in vivo remain limited and are confounded by difficulties in identifying and genetically characterizing edited cells. Here we present scPT-seq, a single-cell RNA assay that resolves CRISPR-induced mutations at base-pair resolution and captures transcriptional responses in the same single cells in vivo. scPT-seq comes with a computational analysis suite enabling haplotype-resolved mutation detection and characterization of complex editing outcomes, including splice-junction variation. Applied to the Drosophila intestine, a highly regenerative tissue, scPT-seq distinguishes cell-autonomous from environmental effects by identifying mutant and wild-type cells within tissues, and reveals spatially organized compensatory mechanisms in response to mutations. By using editing outcomes as heritable clonal markers, we identified distinct intestinal stem cell populations with specialized differentiation trajectories. In summary, scPT-seq provides a versatile technology for dissecting gene function and lineage dynamics in complex tissues.

molecular biology↗