» Articles » PMID: 6202700

Epithelial Cytoskeletal Framework and Nuclear Matrix-intermediate Filament Scaffold: Three-dimensional Organization and Protein Composition

Overview
Journal J Cell Biol
Specialty Cell Biology
Date 1984 Jun 1
PMID 6202700
Citations 125
Authors
Affiliations
Soon will be listed here.
Abstract

Madin-Darby canine kidney (MDCK) cells grow as differentiated, epithelial colonies that display tissue-like organization. We examined the structural elements underlying the colony morphology in situ using three consecutive extractions that produce well-defined fractions for both microscopy and biochemical analysis. First, soluble proteins and phospholipid were removed with Triton X-100 in a physiological buffer. The resulting skeletal framework retained nuclei, dense cytoplasmic filament networks, intercellular junctional complexes, and apical microvillar structures. Scanning electron microscopy showed that the apical cell morphology is largely unaltered by detergent extraction. Residual desmosomes, as can be seen in thin sections, were also well-preserved. The skeletal framework was visualized in three dimensions as an unembedded whole mount that revealed the filament networks that were masked in Epon-embedded thin sections of the same preparation. The topography of cytoskeletal filaments was relatively constant throughout the epithelial sheet, particularly across intercellular borders. This ordering of epithelial skeletal filaments across contiguous cell boundaries was in sharp contrast to the more independent organization of networks in autonomous cells such as fibroblasts. Further extraction removed the proteins of the salt-labile cytoskeleton and the chromatin as separate fractions, and left the nuclear matrix-intermediate filament (NM-IF) scaffold. The NM-IF contained only 5% of total cellular protein, but whole mount transmission electron microscopy and immunofluorescence showed that this scaffold was organized as in the intact epithelium. Immunoblots demonstrate that vimentin, cytokeratins, desmosomal proteins, and a 52,000-mol-wt nuclear matrix protein were found almost exclusively in the NM-IF scaffold. Vimentin was largely perinuclear while the cytokeratins were localized at the cell borders. The 52,000-mol-wt nuclear matrix protein was confined to the chromatin-depleted matrix and the desmosomal proteins were observed in punctate polygonal arrays at intercellular junctions. The filaments of the NM-IF were seen to be interconnected, via the desmosomes, over the entire epithelial colony. The differentiated epithelial morphology was reflected in both the cytoskeletal framework and the NM-IF scaffold.

Citing Articles

Purine-Rich Element Binding Protein Alpha, a Nuclear Matrix Protein, Has a Role in Prostate Cancer Progression.

Inoue T, Bao X, Kageyama T, Sugino Y, Sekito S, Miyachi S Int J Mol Sci. 2024; 25(13).

PMID: 39000020 PMC: 11241608. DOI: 10.3390/ijms25136911.


Defects in integrin complex formation promote -mediated muscular dystrophy.

Tavasoli M, McMaster C Life Sci Alliance. 2024; 7(8).

PMID: 38749543 PMC: 11096732. DOI: 10.26508/lsa.202301956.


Reversible Host-Guest Crosslinks in Supramolecular Hydrogels for On-Demand Mechanical Stimulation of Human Mesenchymal Stem Cells.

Linke P, Munding N, Kimmle E, Kaufmann S, Hayashi K, Nakahata M Adv Healthc Mater. 2023; 13(10):e2302607.

PMID: 38118064 PMC: 11481031. DOI: 10.1002/adhm.202302607.


Endoplasmic reticulum tethering by desmosomes.

Harmon R, Gottardi C Nat Cell Biol. 2023; 25(6):796-797.

PMID: 37291268 DOI: 10.1038/s41556-023-01144-6.


Review of Basic Research about Ossification of the Spinal Ligaments Focusing on Animal Models.

Ikuta M, Kaito T, Fujimori T, Kitahara T, Furuichi T, Bun M J Clin Med. 2023; 12(5).

PMID: 36902744 PMC: 10003841. DOI: 10.3390/jcm12051958.


References
1.
Lane E, Goodman S, Trejdosiewicz L . Disruption of the keratin filament network during epithelial cell division. EMBO J. 1982; 1(11):1365-72. PMC: 553218. DOI: 10.1002/j.1460-2075.1982.tb01324.x. View

2.
Berezney R, Coffey D . Identification of a nuclear protein matrix. Biochem Biophys Res Commun. 1974; 60(4):1410-7. DOI: 10.1016/0006-291x(74)90355-6. View

3.
Aaronson R, Blobel G . Isolation of nuclear pore complexes in association with a lamina. Proc Natl Acad Sci U S A. 1975; 72(3):1007-11. PMC: 432453. DOI: 10.1073/pnas.72.3.1007. View

4.
Berezney R, Coffey D . Nuclear protein matrix: association with newly synthesized DNA. Science. 1975; 189(4199):291-3. DOI: 10.1126/science.1145202. View

5.
Mooseker M . Brush border motility. Microvillar contraction in triton-treated brush borders isolated from intestinal epithelium. J Cell Biol. 1976; 71(2):417-33. PMC: 2109748. DOI: 10.1083/jcb.71.2.417. View