» Articles » PMID: 3982503

Multiple Innervation of Tonic Endplates Revealed by Activity-dependent Uptake of Fluorescent Probes

Overview
Journal Nature
Specialty Science
Date 1985 Mar 3
PMID 3982503
Citations 32
Authors
Affiliations
Soon will be listed here.
Abstract

During development of the vertebrate nervous system, there is a widespread reduction in the number of axons innervating target cells. This phenomenon, often called synapse elimination, has been particularly well studied at the neuromuscular junction of developing twitch muscle fibres: following a period of polyneuronal innervation, axonal branches are retracted, usually leaving each twitch fibre endplate innervated by only one axon. Here we describe a new technique for the study of synapse elimination--activity-mediated uptake of fluorescent probes. These probes selectively and supravitally label all the terminals of individual axons. The technique is used here in adult and embryonic snakes to study the innervation pattern of a thin muscle containing two fibre types: twitch fibres, which are fast-contracting and have propagated action potentials, and tonic fibres, which are slow-contracting and lack action potentials. We find that twitch muscle fibres, as expected, eliminate all polyneuronal innervation during development; in contrast, tonic fibre endplates remain polyneuronally innervated into adulthood. The persistence of multiple innervation at tonic endplates may be related to the lack of action potential activity in tonic muscle fibres.

Citing Articles

Extreme Tolerance of Extraocular Muscles to Diseases and Aging: Why and How?.

Titova A, Nikolaev S, Bilyalov A, Filatov N, Brovkin S, Shestakov D Int J Mol Sci. 2024; 25(9).

PMID: 38732204 PMC: 11084950. DOI: 10.3390/ijms25094985.


Illuminating membrane structural dynamics of fusion and endocytosis with advanced light imaging techniques.

Chan C, Faragalla Y, Wu L Biochem Soc Trans. 2022; 50(4):1157-1167.

PMID: 35960003 PMC: 9444071. DOI: 10.1042/BST20210263.


Differences in the constituent fiber types contribute to the intermuscular variation in the timing of the developmental synapse elimination.

Lee Y Sci Rep. 2019; 9(1):8694.

PMID: 31213646 PMC: 6582271. DOI: 10.1038/s41598-019-45090-6.


Limitations of Sulforhodamine 101 for Brain Imaging.

Hulsmann S, Hagos L, Heuer H, Schnell C Front Cell Neurosci. 2017; 11:44.

PMID: 28293173 PMC: 5328990. DOI: 10.3389/fncel.2017.00044.


Similar synapse elimination motifs at successive relays in the same efferent pathway during development in mice.

Sheu S, Tapia J, Tsuriel S, Lichtman J Elife. 2017; 6.

PMID: 28157072 PMC: 5315461. DOI: 10.7554/eLife.23193.