» Articles » PMID: 35654038

γ-secretase Promotes Drosophila Postsynaptic Development Through the Cleavage of a Wnt Receptor

Overview
Journal Dev Cell
Publisher Cell Press
Date 2022 Jun 2
PMID 35654038
Authors
Affiliations
Soon will be listed here.
Abstract

Developing synapses mature through the recruitment of specific proteins that stabilize presynaptic and postsynaptic structure and function. Wnt ligands signaling via Frizzled (Fz) receptors play many crucial roles in neuronal and synaptic development, but whether and how Wnt and Fz influence synaptic maturation is incompletely understood. Here, we show that Fz2 receptor cleavage via the γ-secretase complex is required for postsynaptic development and maturation. In the absence of γ-secretase, Drosophila neuromuscular synapses fail to recruit postsynaptic scaffolding and cytoskeletal proteins, leading to behavioral deficits. Introducing presenilin mutations linked to familial early-onset Alzheimer's disease into flies leads to synaptic maturation phenotypes that are identical to those seen in null alleles. This conserved role for γ-secretase in synaptic maturation and postsynaptic development highlights the importance of Fz2 cleavage and suggests that receptor processing by proteins linked to neurodegeneration may be a shared mechanism with aspects of synaptic development.

Citing Articles

Cephalic ganglia transcriptomics of the American cockroach Periplaneta americana (Blattodea: Blattidae).

Levy I, Arvidson R J Insect Sci. 2024; 24(6).

PMID: 39688382 PMC: 11650548. DOI: 10.1093/jisesa/ieae113.


Postsynaptic BMP signaling regulates myonuclear properties in Drosophila larval muscles.

von Saucken V, Windner S, Armetta G, Baylies M J Cell Biol. 2024; 224(1).

PMID: 39475469 PMC: 11530350. DOI: 10.1083/jcb.202404052.


ESCRT disruption provides evidence against trans-synaptic signaling via extracellular vesicles.

Dresselhaus E, Harris K, Blanchette C, Koles K, Del Signore S, Pescosolido M J Cell Biol. 2024; 223(9).

PMID: 38842573 PMC: 11157088. DOI: 10.1083/jcb.202405025.


ESCRT disruption provides evidence against transsynaptic signaling functions for extracellular vesicles.

Dresselhaus E, Harris K, Blanchette C, Koles K, Del Signore S, Pescosolido M bioRxiv. 2024; .

PMID: 38746182 PMC: 11092503. DOI: 10.1101/2023.04.22.537920.


Neuronal LRP4 directs the development, maturation and cytoskeletal organization of Drosophila peripheral synapses.

DePew A, Bruckner J, OConnor-Giles K, Mosca T Development. 2024; 151(11).

PMID: 38738619 PMC: 11190576. DOI: 10.1242/dev.202517.


References
1.
Zito K, Parnas D, Fetter R, Isacoff E, Goodman C . Watching a synapse grow: noninvasive confocal imaging of synaptic growth in Drosophila. Neuron. 1999; 22(4):719-29. DOI: 10.1016/s0896-6273(00)80731-x. View

2.
Huntley G, Benson D . Origins of Parkinson's Disease in Brain Development: Insights From Early and Persistent Effects of LRRK2-G2019S on Striatal Circuits. Front Neurosci. 2020; 14:265. PMC: 7113397. DOI: 10.3389/fnins.2020.00265. View

3.
Chen C, Struhl G . Wingless transduction by the Frizzled and Frizzled2 proteins of Drosophila. Development. 1999; 126(23):5441-52. DOI: 10.1242/dev.126.23.5441. View

4.
Thurmond J, Goodman J, Strelets V, Attrill H, Gramates L, Marygold S . FlyBase 2.0: the next generation. Nucleic Acids Res. 2018; 47(D1):D759-D765. PMC: 6323960. DOI: 10.1093/nar/gky1003. View

5.
Georgakopoulos A, Litterst C, Ghersi E, Baki L, Xu C, Serban G . Metalloproteinase/Presenilin1 processing of ephrinB regulates EphB-induced Src phosphorylation and signaling. EMBO J. 2006; 25(6):1242-52. PMC: 1422162. DOI: 10.1038/sj.emboj.7601031. View