ArticleJournal of neurochemistry2017
Alternate promoter usage generates two subpopulations of the neuronal RhoGEF Kalirin-7.
Article in Journal of neurochemistry, 2017. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed, 12 citations in OpenAlex.
- Accurate profiling of single-cell alternative transcript start sites by correcting RNA degradation.Nature communications · 2026Article
- Identification and characterization of human KALRN mRNA and Kalirin protein isoforms.Cerebral cortex (New York, N.Y. : 1991) · 2024Article
- A Novel Cis-Regulatory lncRNA,Non-coding RNA · 2023Article
- Structure of the Sec14 domain of Kalirin reveals a distinct class of lipid-binding module in RhoGEFs.Nature communications · 2023Article
- Kalirin and Trio: RhoGEFs in Synaptic Transmission, Plasticity, and Complex Brain Disorders.Trends in neurosciences · 2020Review
- Pan-cancer analysis of clinical relevance of alternative splicing events in 31 human cancers.Oncogene · 2019Article
- Neurodevelopmental disease-associated de novo mutations and rare sequence variants affect TRIO GDP/GTP exchange factor activity.Human molecular genetics · 2017Article
- Brain Region and Isoform-Specific Phosphorylation Alters Kalirin SH2 Domain Interaction Sites and Calpain Sensitivity.ACS chemical neuroscience · 2017Article
- A Novel Long Non-coding RNA,Frontiers in molecular neuroscience · 2017Article
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Authors and funding
6 authors at 1 institution in 1 country.
Funding
Abstract
Kalirin (Kal), a dual Rho GDP/GTP exchange factor (GEF), plays essential roles within and outside the nervous system. Tissue-specific, developmentally regulated alternative splicing generates isoforms with one (Kal7) or two (Kal9, Kal12) GEF domains along with a kinase (Kal12) domain; while Kal9 and Kal12 are crucial for neurite outgrowth, Kal7 plays important roles in spine maintenance and synaptic plasticity. Tissue-specific usage of alternate Kalrn promoters (A, B, C, D) places four different peptides before the Sec14 domain. cSec14, with an amphipathic helix encoded by the C-promoter (Kal-C-helix), is the only variant known to interact with phosphoinositides. We sought to elucidate the biological significance of Kalirin promoter usage and lipid binding. While Ex1B expression was predominant early in development, Ex1C expression increased when synaptogenesis occurred. Kal-C-helix-containing Kal7 (cKal7) was enriched at the postsynaptic density, present in the microsomal fraction and absent from cytosol; no significant amount of cKal9 or cKal12 could be identified in mouse brain. Similarly, in primary hippocampal neurons, endogenous cKalirin colocalized with postsynaptic density 95 in dendritic spines, juxtaposed to Vglut1-positive puncta. When expressed in young neurons, bSec14-EGFP was diffusely distributed, while cSec14-EGFP localized to internal puncta. Transfected bKal7-EGFP and cKal7-EGFP localized to dendritic spines and increased spine density in more mature cultured neurons. Although promoter usage did not alter the Rac-GEF activity of Kal7, the synaptic puncta formed by cKal7-EGFP were smaller than those formed by bKal7-EGFP. Molecular modeling predicted a role for Kal-C-helix residue Arg
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Registered trials
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