Content area

Abstract

Cholinesterase-like adhesion molecules (CLAMs) are a family of neuronal cell adhesion molecules with important roles in synaptogenesis, and in maintaining structural and functional integrity of the nervous system. Our earlier study on the cytoplasmic domain of one of these CLAMs, the Drosophila protein, gliotactin, showed that it is intrinsically unstructured in vitro. Bioinformatic analysis suggested that the cytoplasmic domains of other CLAMs are also intrinsically unstructured, even though they bear no sequence homology to each other or to any known protein. In this study, we overexpress and purify the cytoplasmic domain of human neuroligin 3, notwithstanding its high sensitivity to the Escherichia coli endogenous proteases that cause its rapid degradation. Using bioinformatic analysis, sensitivity to proteases, size exclusion chromatography, fluorescence correlation spectroscopy, analytical ultracentrifugation, small angle x-ray scattering, circular dichroism, electron spin resonance, and nuclear magnetic resonance, we show that the cytoplasmic domain of human neuroligin 3 is intrinsically unstructured. However, several of these techniques indicate that it is not fully extended, but becomes significantly more extended under denaturing conditions. [PUBLICATION ABSTRACT]

Details

Title
Biophysical Characterization of the Unstructured Cytoplasmic Domain of the Human Neuronal Adhesion Protein Neuroligin 3
Publication title
Volume
95
Issue
4
Pages
1928-44
Number of pages
17
Publication year
2008
Publication date
Aug 15, 2008
Publisher
Biophysical Society
Place of publication
New York
Country of publication
United States
Publication subject
ISSN
00063495
e-ISSN
15420086
Source type
Scholarly Journal
Language of publication
English
Document type
Journal Article
Document feature
Diagrams; Equations; Graphs; Photographs; References
Accession number
18456828
ProQuest document ID
215696058
Document URL
https://www.proquest.com/scholarly-journals/biophysical-characterization-unstructured/docview/215696058/se-2?accountid=208611
Copyright
Copyright Biophysical Society Aug 15, 2008
Last updated
2024-10-04
Database
ProQuest One Academic