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DMXL2 Is Required for Endocytosis and Recycling of Synaptic Vesicles in Auditory Hair Cells. | LitMetric

AI Article Synopsis

  • - The study investigates the role of DMXL2 in inner hair cells (IHCs) which are crucial for rapid neurotransmission of sound, highlighting the challenges of understanding the molecular process behind synaptic vesicle recycling.
  • - Mice with a knockout of the DMXL2 gene exhibited auditory synaptopathy, leading to impaired synaptic endocytosis and significant hearing loss, evidenced by reduced auditory brainstem response.
  • - Electrophysiological tests and 3D electron microscopy revealed that the mutant mice had deficiencies in synaptic exocytosis and recycling, despite maintaining some vesicles, indicating DMXL2's key role in these processes.

Article Abstract

Ribbon synapses of inner hair cells (IHCs) are uniquely designed for ultrafast and indefatigable neurotransmission of the sound. The molecular machinery ensuring the efficient, compensatory recycling of the synaptic vesicles (SVs), however, remains elusive. This study showed that hair cell knock-out of murine , whose human homolog is responsible for nonsyndromic sensorineural hearing loss DFNA71, resulted in auditory synaptopathy by impairing synaptic endocytosis and recycling. The mutant mice in the C57BL/6J background of either sex had mild hearing loss with severely diminished wave I amplitude of the auditory brainstem response. Membrane capacitance measurements of the IHCs revealed deficiency in sustained synaptic exocytosis and endocytic membrane retrieval. Consistent with the electrophysiological findings, 3D electron microscopy reconstruction showed reduced reserve pool of SVs and endocytic compartments, while the membrane-proximal and ribbon-associated vesicles remain intact. Our results propose an important role of DMXL2 in hair cell endocytosis and recycling of the SVs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11411588PMC
http://dx.doi.org/10.1523/JNEUROSCI.1405-23.2024DOI Listing

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