Topographic study of arrestin using differential chemical modifications and hydrogen/deuterium exchange
Open Access
- 31 December 1994
- journal article
- research article
- Published by Wiley in Protein Science
- Vol. 3 (12) , 2428-2434
- https://doi.org/10.1002/pro.5560031226
Abstract
Arrestin is involved in the quenching of phototransduction by binding to photoactivated and phosphorylated rhodopsin (P‐Rho*). To study its conformational changes and regions interacting with P‐Rho*, arrestin was subjected to (1) differential acetylation at lysine residues in the presence and absence of P‐Rho*, and (2) amide hydrogen/deuterium exchange. Labeled protein was proteolysed and analyzed by mass spectrometry. Three Lys residues, 28, 176, and 211, were protected from acetylation in native arrestin, although they were not located in regions exhibiting slow amide hydrogen exchange rates. The presence of P‐Rho* protected lysine 201 from acetylation and partially protected 14 other lysyl residues, including (2, 5), (163, 166, 167), (232, 235, 236, 238), (267, 276), (298, 300), and 367, where parentheses indicate lysine residues found within the same peptide. In contrast, in the C‐terminal region of arrestin, lysyl residues (386, 392, 395) were more exposed upon binding to P‐Rho*. These data allowed us to identify functional regions in the arrestin molecule.Keywords
This publication has 47 references indexed in Scilit:
- A Segment Corresponding to Amino Acids Val170-Arg182 of Bovine Arrestin is Capable of Binding to Phosphorylated RhodopsinEuropean Journal of Biochemistry, 1994
- Structure and functions of arrestinsProtein Science, 1994
- X‐Arrestin: a new retinal arrestin mapping to the X chromosomeFEBS Letters, 1993
- Mass spectrometric identification of phosphorylation sites in bleached bovine rhodopsinBiochemistry, 1993
- Sequential phosphorylation of rhodopsin at multiple sitesBiochemistry, 1993
- Determination of amide hydrogen exchange by mass spectrometry: A new tool for protein structure elucidationProtein Science, 1993
- Structural properties of arrestin studied by chemical modification and circular dichroismBiochemistry, 1992
- Binding of inositol phosphates to arrestinFEBS Letters, 1991
- An experimental procedure for increasing the structural resolution of chemical hydrogen-exchange measurements on proteins: Application to ribonuclease S peptideJournal of Molecular Biology, 1979
- Functional arginyl residues in carboxypeptidase A. Modification with butanedioneBiochemistry, 1973