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A single exon alternative splicing in the CLTC gene determines clathrin coat organization. This event controls plasticity from clathrin-coated pits to plaques, structures that are essential for muscle fiber function and maintenance
ORGANISM(S): Homo sapiens (Human) 
2020-06-19 | PXD018333 | Pride
Sciatic nerve axon segments from adult mouse were isolated. Following enzymatic digestion, lysate was subjected to incubation with beads conjugated with either clathrin heavy chain antibody or control IgG antibody for clathrin immunoprecipitation. MudPIT analysis was subsequently performed to identi...
ORGANISM(S): Mus musculus (Mouse) 
2021-08-12 | PXD027857 | Pride
Tiny exons, known as microexons, are often alternatively spliced in a tissue-specific manner. The existence of alternatively spliced microexons and their regulation have been greatly investigated in brain development and autism spectrum disorders, but very little is known about microexons in other t...
ORGANISM(S): Mus musculus 
2026-09-10 | GSE333636 | GEO
A novel species- and skeletal muscle specific microexon regulated by alternative splicing diversifies the menu of clathrin heavy chains in mice and rats
Fungi are the most important plant pathogens on agricultural and horticultural crops. Study of these pathogens remains essential to understand pathogenic process and control plant diseases. In this context, a random insertional mutagenesis strategy, based on the Agrobacterium tumefaciens-mediated tr...
ORGANISM(S): Botryotinia fuckeliana (strain B05.10) (Noble rot fungus) (Botrytis cinerea) 
2021-06-11 | PXD023460 | Pride
The cell line DKO-S is derived form chicken B-Cell DT40 cells where the clathrin heavy-chain has been placed under the control of a tetracycline-regulatable promoter (Tet-Off). The originally derived cell-line DKO-S underwent apoptosis when clathrin expression was repressed. A cell line, DKO-R, deri...
ORGANISM(S): Gallus gallus 
2014-05-07 | GSE57328 | GEO
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