Duplicated zebrafish (Danio rerio) inositol phosphatases inpp5ka and inpp5kb diverged in expression pattern and function
Shukla, D.; Gural, B. M.; Cauley, E. S.; Roberts, L. E.; Karas, B. F.; Cavallo, L.; Turkalj, L.; Moody, S. A.; Swan, L. E.; Manzini, M. C.
Show abstract
One hurdle in the development of zebrafish models of human disease is the presence of multiple zebrafish orthologs resulting from whole genome duplication in teleosts. Mutations in Inositol polyphosphate 5-phosphatase K (INPP5K) lead to a syndrome characterized by variable presentation of intellectual disability, brain abnormalities, cataracts, muscle disease, and short stature. INPP5K is a phosphatase acting at position 5 of phosphoinositides to control their homeostasis and is involved in insulin signaling, cytoskeletal regulation, and protein trafficking. Previously, our group and others have replicated the human phenotypes in zebrafish knockdown models by targeting both INPP5K orthologs inpp5ka and inpp5kb. Here, we show that inpp5ka is the more closely related orthologue to human INPP5K. While both inpp5ka and inpp5kb mRNA expression levels follow a similar trend in the developing head, eyes, and tail, inpp5ka is much more abundantly expressed in these tissues than inpp5kb. In situ hybridization revealed a similar trend, also showing unique localization of inpp5kb in the pineal gland indicating different transcriptional regulation. We also found that inpp5kb has lost its catalytic activity against its preferred substrate, PtdIns(4,5)P2. Since most human mutations are missense changes disrupting phosphatase activity, we propose that loss of inpp5ka alone can be targeted to recapitulate the human presentation. In addition, we show that the function of inpp5kb has diverged from inpp5ka and may play a novel role in the zebrafish.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- CARMIL3 is important for cell migration and morphogenesis during early development in zebrafish 94%
- Mutant analysis of Kcng4b reveals how the different functional states of the voltage-gated potassium channel regulate ear development 94%
- Urp1 and Urp2 act redundantly to maintain spine shape in zebrafish larvae. 94%
Similar papers in this journal
- Shared and unique consequences of Joubert Syndrome gene dysfunction on the zebrafish central nervous system 93%
- Nucleolar stress in Drosophila neuroblasts, a model for human ribosomopathies 93%
- A hypomorphic mutation in Pold1 disrupts the coordination of embryo size expansion and morphogenesis during gastrulation 93%
Similar papers in this journal
- BMP signaling pathway member expression is enriched in enteric neural progenitors and required for zebrafish enteric nervous system development 93%
- The role of Gdf5 in the development of the zebrafish fin endoskeleton 93%
- Analysis of FGF20-regulated genes in organ of Corti progenitors by translating ribosome affinity purification 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.