Crossref journal-article
Portland Press Ltd.
Biochemical Journal (288)
Abstract

Hypo-osmotic homogenization of the endoneurium from the adult-rat sciatic nerve and subsequent evaluation of the 197 000 g aqueous supernatant by sodium dodecyl sulphate pore-gradient electrophoresis (SDS-p.g.e.) revealed a release of the major glycoprotein (P0) (29 000 Mr) from peripheral nerve myelin. Immunological verification of the presence of this asparagine-linked glycoprotein in the aqueous supernatant was obtained by immune overlay after SDS-p.g.e. and electrophoretic transfer to nitrocellulose using anti-P0 gamma-globulin followed by autoradiographic detection with 125I-protein A. A comparison of successive hypo- and iso-osmotic extractions of the endoneurium revealed that the hypo-osmotic extraction released increasing amounts of P0 into the supernatant fraction, whereas the iso-osmotic treatment revealed lower levels of P0 extracted from the myelin and lesser amounts with each successive extraction. Three successive hypo-osmotic extractions resulted in a 2.0-, 2.9-, and 9.5-fold increase in the amount of P0 released compared with the successive iso-osmotic extractions. Although these results suggest that this major myelin glycoprotein has properties similar to those of extrinsic membrane proteins, temperature-dependent phase-partitioning experiments with Triton X-114 revealed that this glycoprotein is recovered in the detergent-enriched lower phase. These results indicate that this major myelin glycoprotein is an amphipathic integral membrane protein with a distinct hydrophobic domain and yet has solubility characteristics typical of an extrinsic membrane protein. P0 labelled in vitro with [3H]mannose could be immunoprecipitated from the aqueous supernatant with anti-P0 gamma-globulin by centrifugation at 197000g without the addition of second antibody or protein A. Analysis of such an immune precipitate after incorporation in vitro with [14C]acetate to label endoneurial lipids revealed that all major endoneurial lipid classes contained radioactive label, as determined by fluorography after high-performance t.l.c. The mechanism of release of this intrinsic glycoprotein from the myelin membrane, therefore, involves the osmotic-dependent formation of mixed micelles or membrane vesicles with endogenous membrane lipids.

Bibliography

Poduslo, J. F., & Yao, J. K. (1985). Association and release of the major intrinsic membrane glycoprotein from peripheral nerve myelin. Biochemical Journal, 228(1), 43–54.

Authors 2
  1. J F Poduslo (first)
  2. J K Yao (additional)
References 0 Referenced 16

None

Dates
Type When
Created 10 years ago (Aug. 10, 2015, 4:48 p.m.)
Deposited 3 years, 9 months ago (Nov. 25, 2021, 9:55 a.m.)
Indexed 11 months, 3 weeks ago (Sept. 2, 2024, 5:08 a.m.)
Issued 40 years, 3 months ago (May 15, 1985)
Published 40 years, 3 months ago (May 15, 1985)
Published Print 40 years, 3 months ago (May 15, 1985)
Funders 0

None

@article{Poduslo_1985, title={Association and release of the major intrinsic membrane glycoprotein from peripheral nerve myelin}, volume={228}, ISSN={1470-8728}, url={http://dx.doi.org/10.1042/bj2280043}, DOI={10.1042/bj2280043}, number={1}, journal={Biochemical Journal}, publisher={Portland Press Ltd.}, author={Poduslo, J F and Yao, J K}, year={1985}, month=may, pages={43–54} }