Effect of phospholipid methylation on calcium transport and (Ca2+ + Mg2+)-ATPase activity in kidney cortex basolateral membranes |
| |
Authors: | Ved P.S. Chauhan Vijay K. Kalra |
| |
Affiliation: | Department of Biochemistry, University of Southern California, School of Medicine, Los Angeles, CA 90033 U.S.A. |
| |
Abstract: | Basolateral membranes isolated from hog kidney cortex, enriched 12- to 15-fold in (Na+ + K+)-ATPase activity, were 80% oriented inside-out as determined by assay of oubain-sensitive (Na+ + K+)-ATPase activity before and after opening of the membrane vesicle preparation with a mixture of deoxycholate and EDTA. In these membrane preparations 80% of total phosphatidylethanolamine was accessible to trinitrophenylation by trinitrobenzenesulfonic acid at 4°C, while at 37°C all of phosphatidylethanolamine fraction was chemically modified. Phospholipase C treatment resulted in hydrolysis of 80% phosphatidylethanolamine, 40% phosphatidylcholine and 35% of phosphatidylserine. Sphingomyelinase treatment resulted in 20% hydrolysis of sphingomyelin, presumably derived from right-side-out oriented vesicles. Results indicate that phosphatidylethanolamine is oriented exclusively on the outer leaflet of the lipid bilayer of inside-out oriented vesicles. Methylation of phospholipids in basolateral membranes with resulted in the three successive methylation of ethanolamine moiety of phosphatidylethanolamine to phosphatidylcholine. The for was 1·10?4 M with an optimum pH 9.0 for the formation of all three methyl derivatives. Mg2+ was without any effect between pH 5 and 10. Basolateral membranes incubated in the presence of methyl donor, , exhibited increased (12–15%) (Ca2+ + Mg2+)-ATPase activity and increased ATP-dependent uptake of calcium. ATP-dependent calcium uptake in these vesicles was insensitive to oligomycin and ouabain but was abolished completely by 50 μM vanadate. The increase in ATP-dependent calcium uptake was due to an increase in and not due to a change in for Ca2+. Preincubation of membranes with , a methyltransferase inhibitor, abolished the stimulatory effect of phospholipid methylation on calcium uptake. Phospholipid methylation at both low and high pH did not result in a change in bulk membrane fluidity as determined by the fluorescence polarization of diphenylhexatriene. These results suggest that phospholipid methylation may regulate transepithelial calcium flux in vivo. |
| |
Keywords: | Phospholipid methylation Fluorescence polarization (Basolateral membrane) TNBS 2,4,6-trinitrobenzenesulfonic acid Hepes PE phosphatidylethanolamine PME PDE EGTA PMSF phenylmethylsulfonyl fluoride |
本文献已被 ScienceDirect 等数据库收录! |
|