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Acyl-CoA-binding protein AcbdA is required for peroxisome hitchhiking on early endosomes in Aspergillus nidulans

Molecular biology of the cell. 2025-12; 
Bellana E Driscoll, Madison B Fountain, Isabella N Gates, Reihane Abdollahi, Allison M Langley, Matthew B Owens, Jenna R Christensen, John Salogiannis
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Gene Synthesis The insert 5’- AAACGCGATCGTAAGCGCAACCACTACGATGACATTGATAGCTGGCGATGGCGCCGCAGAGTCGAGCAGGCCTTGACCAAAATGACGGCCGAGATCGCCGCCGCCCGCGAGCAGATGGAAGCACGCACCCTGGCAGCCCGTCGAAGATCAGGCGTCTGGGCTTGGCTTCGGTGGCTGGTATGGGTCACCCTCCGACAGATTATCTGGGATCTGGCCCTCCTCGGCATGTTATTGATCTGGATGCGGCTGCGCCAGGATCGACGGCTCGAGGAGCAGCTTAAGGCTGGGTGGTCGGTTGTGAAGGCGCGGTTAGCAGGACTGAAAGCTTTGCGGGACTTGAGGAAGGTATATATATTTTCTTGA-3’ was synthesized and subcloned into a plasmid containing a gpdA promoter at the white locus by GenScript. Get A Quote
PCR Cloning and Subcloning Get A Quote

Abstract

Motor-driven transport on microtubules is critical for distributing organelles throughout the cell. Most commonly, organelle movement is mediated by cargo adaptors, proteins on the surface of an organelle that directly recruit microtubule-based motors. An alternative mechanism called hitchhiking was recently discovered: some organelles move, not by recruiting the motors directly, but instead by using membrane contact sites (MCS) to attach to motor-driven vesicles and hitchhike along microtubules. Organelle hitchhiking is observed across fungi and animals. In filamentous fungi, nearly all peroxisomes move by hitchhiking on early endosomes (EE). In the fungus Aspergillus nidulans, EE-associated linker proteins Px... More

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