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Andersson, O.

Publications and source records attributed to Andersson, O..

2 recordsLinked to original sources

Efficient knock-in method enabling lineage tracing in zebrafish

The CRISPR-Cas9 system aids generation of knock-in zebrafish lines, but it has been hard to integrate large constructs and avoid disrupting the targeted genes. Here we devised a 3 knock-in strategy of PCR-amplified dsDNA, which coded for fluorescence proteins and Cre recombinase in frame with the endogenous gene but separated from each other by self-cleavable peptides. Primers with 5 AmC6 end-protections generated improved PCR amplicons harboring either short or long homologous arms, which were co-injected with pre-assembled Cas9/gRNA ribonucleoprotein complexes for early integration. We targeted four genetic loci (krt92, nkx6.1, krt4, and id2a) and generated ten knock-in lines, which function as reporters for the endogenous gene expression. The knocked-in iCre or CreERT2 were used for lineage tracing, which suggested nkx6.1+ cells are multipotent pancreatic progenitors that gradually restrict to bipotent duct; while id2a+ cells are multipotent in both liver and pancreas and gradually restrict to ductal cells. Additionally, hepatic id2a+ duct show progenitor properties upon extreme hepatocyte loss. Thus, we present an efficient knock-in technique with widespread use for both cellular labelling and lineage tracing.

genetics↗

Regenerating insulin-producing β-cells ectopically from a mesodermal origin in the absence of endothelial specification

To investigate the role of the vasculature in pancreatic {beta}-cell regeneration, we crossed a zebrafish {beta}-cell ablation model into the avascular npas4l mutant (i.e. cloche). Surprisingly, {beta}-cell regeneration increased markedly in npas4l mutants owing to the ectopic differentiation of {beta}-cells in the mesenchyme, a phenotype not previously reported in any models. The ectopic {beta}-cells expressed endocrine markers of pancreatic {beta}-cells, and also reduced glucose levels in the {beta}-cell ablation model. Through lineage tracing, we determined that the vast majority of these ectopic {beta}-cells derived from the mesodermal lineage. Notably, ectopic {beta}-cells were found in npas4l mutants as well as following knockdown of the endothelial determinant Etv2. Together, these data indicate that in the absence of endothelial specification, mesodermal cells possess a remarkable plasticity enabling them to form {beta}-cells, which are normally endodermal in origin. Understanding the restriction of this differentiation plasticity will help exploit an alternative source for {beta}-cell regeneration.

developmental biology↗