The inter-organelle cross-talk finely orchestrated in the amyloidogenic processing of amyloid precursor protein in dendritic arborization neurons of Drosophila
Guo Cheng, Jin Chang, Shanshan Ke, Zimin Dai, Deyong Gong, Hui Gong, Wei Zhou

TL;DR
This study explores how organelles in fruit fly neurons communicate during amyloid processing, revealing how their interactions change in Alzheimer's disease.
Contribution
The paper introduces a new in vivo model system to study inter-organelle communication in Alzheimer's disease using Drosophila neurons.
Findings
A dynamic network of organelle contacts (GELM) was identified in dendritic neurons.
CS modulations in the GELM network are disturbed during amyloid precursor protein processing.
Knocking down Miro partially rescues CS perturbations and dendrite structural defects.
Abstract
Background: Organelles in neuronal dendrites facilitate local metabolic processes and energy supply, crucial for dendrite development and neurodegenerative diseases. The distinct functions of dendritic organelles have been well studied, however, their crosstalk under physiological and pathological contexts remains elusive. We aimed to establish an in vivo model system of contacts between multi-organelles for investigating the modulation of inter-organelle crosstalk in Alzheimer's disease (AD). Methods: A dendrite model of organelle contacts was developed in Drosophila neurons using a set of proximity-driven probes and four-color Airyscan super-resolution imaging. The systematic modulations among multiple contact sites (CSs) between organelles were examined by manipulating CS tethers and vesicular transporters. Finally, perturbations of these CSs and the dendrite structure in the…
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Taxonomy
TopicsCholinesterase and Neurodegenerative Diseases · thermodynamics and calorimetric analyses · Neurobiology and Insect Physiology Research
