Structural Changes in Native Membrane Proteins Monitored at Subnanometer Resolution with the Atomic Force Microscope: A Review

Three membrane proteins, OmpF porin fromEscherichia coli,bacteriorhodopsin fromHalobacterium salinarium,and the hexagonally packed intermediate (HPI) layer fromDeinoccocus radiodurans,were investigated with the atomic force microscope in buffer solution. A resolution of up to 0.8 nm allowed structur...

Full description

Saved in:
Bibliographic Details
Published inJournal of structural biology Vol. 119; no. 2; pp. 149 - 157
Main Authors Müller, Daniel J., Schoenenberger, Cora-Ann, Schabert, Frank, Engel, Andreas
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.07.1997
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:Three membrane proteins, OmpF porin fromEscherichia coli,bacteriorhodopsin fromHalobacterium salinarium,and the hexagonally packed intermediate (HPI) layer fromDeinoccocus radiodurans,were investigated with the atomic force microscope in buffer solution. A resolution of up to 0.8 nm allowed structural differences of individual proteins to be detected. OmpF porin exhibits different static conformations on the outer surface, which possibly represent the two conductive states of the ion channels. Reversible structural changes in the cytoplasmic surface of purple membrane have been induced by changing the force applied to the scanning stylus: doughnut-shaped bacteriorhodopsin trimers transformed into a structure with three pronounced protrusions when the force was reduced from 300 to 100 pN. Furthermore, individual pores of the inner surface of the HPI layer were observed to switch from an “open” to a “closed” state. Together, the structural changes in proteins monitored under physiological conditions suggest that direct observation of function-related conformational changes of biomolecules with the atomic force microscope is feasible.
Bibliography:ObjectType-Article-2
SourceType-Scholarly Journals-1
ObjectType-Feature-3
content type line 23
ObjectType-Review-1
ISSN:1047-8477
1095-8657
DOI:10.1006/jsbi.1997.3878