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Triton shells of intact erythrocytes.
J Supramol Struct. 1978; 8(4):399-412.JS

Abstract

About 40% of human erythrocyte membrane protein is resistant to solubilization in 0.5% Triton X-114. These components comprise a structure called a Triton shell roughly similar in size and shape to the original erythrocyte and thus constitute a cytoskeleton. With increasing concentrations of Triton the lipid content of the Triton shell decreases dramatically, whereas the majority of the protein components remain constant. Exceptions to this rule include proteins contained in band 3, the presumed anion channel, and in band 4 which decrease with increasing Triton concentration. The Triton-insoluble complex includes spectrin (bands 1 and 2), actin (band 5), and bands 3' and 7. Component 3' has an apparent molecular weight of 88,000 daltons as does 3; but unlike 3, it is insensitive to protease treatment of the intact cell, has a low extinction coefficient at 280 nm, and is solubilized from the shells in alkaline water solutions. Component 7 also has a low extinction coefficient at 280 nm. Spectrin alone is solubilized from the Triton shells in isotonic media. The solubilized spectrin contains no bound Triton and coelectrophoreses with spectrin eluted in hypotonic solutions from ghosts. Electron micrographs of fixed Triton shells stained with uranyl acetate show the presence of numerous filaments which appear beaded and are 80--120 A in diameter. The filaments cannot be composed mainly af actin, but enough spectrin is present to form the filaments. Triton shells may provide an excellent source of material useful in the investigation of the erythrocyte cytoskeleton.

Authors

No affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, U.S. Gov't, P.H.S.

Language

eng

PubMed ID

723274

Citation

Sheetz, M P., and D Sawyer. "Triton Shells of Intact Erythrocytes." Journal of Supramolecular Structure, vol. 8, no. 4, 1978, pp. 399-412.
Sheetz MP, Sawyer D. Triton shells of intact erythrocytes. J Supramol Struct. 1978;8(4):399-412.
Sheetz, M. P., & Sawyer, D. (1978). Triton shells of intact erythrocytes. Journal of Supramolecular Structure, 8(4), 399-412.
Sheetz MP, Sawyer D. Triton Shells of Intact Erythrocytes. J Supramol Struct. 1978;8(4):399-412. PubMed PMID: 723274.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Triton shells of intact erythrocytes. AU - Sheetz,M P, AU - Sawyer,D, PY - 1978/1/1/pubmed PY - 1978/1/1/medline PY - 1978/1/1/entrez SP - 399 EP - 412 JF - Journal of supramolecular structure JO - J Supramol Struct VL - 8 IS - 4 N2 - About 40% of human erythrocyte membrane protein is resistant to solubilization in 0.5% Triton X-114. These components comprise a structure called a Triton shell roughly similar in size and shape to the original erythrocyte and thus constitute a cytoskeleton. With increasing concentrations of Triton the lipid content of the Triton shell decreases dramatically, whereas the majority of the protein components remain constant. Exceptions to this rule include proteins contained in band 3, the presumed anion channel, and in band 4 which decrease with increasing Triton concentration. The Triton-insoluble complex includes spectrin (bands 1 and 2), actin (band 5), and bands 3' and 7. Component 3' has an apparent molecular weight of 88,000 daltons as does 3; but unlike 3, it is insensitive to protease treatment of the intact cell, has a low extinction coefficient at 280 nm, and is solubilized from the shells in alkaline water solutions. Component 7 also has a low extinction coefficient at 280 nm. Spectrin alone is solubilized from the Triton shells in isotonic media. The solubilized spectrin contains no bound Triton and coelectrophoreses with spectrin eluted in hypotonic solutions from ghosts. Electron micrographs of fixed Triton shells stained with uranyl acetate show the presence of numerous filaments which appear beaded and are 80--120 A in diameter. The filaments cannot be composed mainly af actin, but enough spectrin is present to form the filaments. Triton shells may provide an excellent source of material useful in the investigation of the erythrocyte cytoskeleton. SN - 0091-7419 UR - https://www.unboundmedicine.com/medline/citation/723274/Triton_shells_of_intact_erythrocytes_ DB - PRIME DP - Unbound Medicine ER -