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The Rh polypeptide is a major fatty acid-acylated erythrocyte membrane protein
1Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.
Abstract:
The erythrocyte Rh antigens contain an Mr = 32,000 integral protein which is thought to contribute in some way to the organization of surrounding phospholipid. To search for possible fatty acid acylation of the Rh polypeptide, intact human erythrocytes were incubated with [3H]palmitic acid prior to preparation of membranes and sodium dodecyl sulfate-polyacrylamide gel electrophoresis and fluorography. Several membrane proteins were labeled, but none corresponded to the glycophorins or membrane proteins 1-8. An Mr = 32,000 band was prominently labeled on Rh (D)-negative and -positive erythrocytes and could be precipitated from the latter with anti-D. No similar protein was labeled on membranes from Rhmod erythrocytes, a rare phenotype lacking Rh antigens. Labeling of the Rh polypeptide most likely represents palmitic acid acylation through thioester linkages. The 3H label was not extracted with chloroform/methanol, but was quantitatively eluted with hydroxylamine and co-chromatographed with palmitohydroxamate and free palmitate by thin layer chromatography. The fatty acid acylations occurred independent of protein synthesis and were completely reversed by chase with unlabeled palmitate. It is concluded that the Rh polypeptide is fatty acid-acylated, being a major substrate of an acylation-deacylation mechanism associated with the erythrocyte membrane.
Insights
The Rh polypeptide in human red blood cells is fatty acid-acylated, meaning it attaches to palmitic acid. This process is reversible and involves an acylation-deacylation mechanism in the erythrocyte membrane.
Area of Science:
- Biochemistry
- Cell Biology
- Hematology
Background:
- The erythrocyte Rh antigens involve an Mr = 32,000 integral protein crucial for phospholipid organization.
- The precise function and modifications of the Rh polypeptide remain incompletely understood.
Purpose of the Study:
- To investigate the potential for fatty acid acylation of the Rh polypeptide.
- To characterize the nature of any observed acylation.
Main Methods:
- Intact human erythrocytes incubated with [3H]palmitic acid.
- Membrane preparation followed by SDS-PAGE and fluorography.
- Precipitation with anti-D and analysis of label stability and linkage.
Main Results:
- A prominent Mr = 32,000 band was labeled with [3H]palmitic acid in both Rh(D)-positive and -negative erythrocytes.
- The label was specifically associated with the Rh polypeptide, as it could be precipitated with anti-D and was absent in Rhmod erythrocytes.
- The 3H label was linked via thioester bonds, removable by hydroxylamine, and involved a reversible acylation-deacylation mechanism.
Conclusions:
- The Rh polypeptide is fatty acid-acylated, likely with palmitic acid.
- This acylation is a major component of an erythrocyte membrane acylation-deacylation mechanism.
- The findings provide new insights into the post-translational modification and function of Rh antigens.