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Immunocytochemical detection and mapping of a cytokeratin 18 neo-epitope exposed during early apoptosis

The Journal of Pathology · 1999 · Vol. 187(5) · pp. 567–572
Mathie P.G. LeersWendy K�lgenViveka Bj�rklundTomas BergmanGordon TribbickBengt PerssonPeter Bj�rklundFrans C. S. RamaekersBertil Bj�rklundMarius NapHans J�rnvallBert Schutte

Abstract

A neo-epitope in cytokeratin 18 (CK18) that becomes available at an early caspase cleavage event during apoptosis and is not detectable in vital epithelial cells is characterized. The monoclonal antibody M30, specific for this site, can be utilized specifically to recognize apoptotic cells, which show cytoplasmic cytokeratin filaments and aggregates after immunohistochemistry with M30, while viable and necrotic cells are negative. The number of cells recognized by the antibody increases after induction of apoptosis in exponentially growing epithelial cell lines and immunoreactivity is independent of the phosphorylation state of the cytokeratins. The generation of the M30 neo-epitope occurs early in the apoptotic cascade, before annexin V reactivity or positive DNA nick end labelling. In a flow cytometric assay, the majority of the M30-positive cells appear in the 'apoptotic' subG1 peak. Tests with synthetic peptides define positions 387-396 of CK18, with a liberated C-terminus at the caspase cleavage site DALD-S, as the ten-residue epitope of M30. This epitope starts at the end of coil 2 of the predicted CK18 structure, at a probable hinge region, compatible with the sensitivity to proteolytic cleavage. The definition of a specific caspase cleavage site in CK18 as a neo-epitope can be used for quantification of apoptotic epithelial cells with immunocytochemical techniques and is applicable to both fresh and formalin-fixed material.

Skin and Cellular Biology ResearchRNA Interference and Gene DeliveryCell death mechanisms and regulationEpitopeCytokeratinApoptosisMolecular biologyBiologyCleavage (geology)AnnexinCaspaseCell biologyMonoclonal antibody

MeSH terms

AnimalsAntibodies, MonoclonalEpitopesEpithelial CellsHumansImmunoenzyme TechniquesKeratinsMice, Inbred BALB CTumor Cells, CulturedApoptosisEpitope MappingCaspasesMice
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References
The biochemistry of programmed cell death
The FASEB Journal · 1995 · 991 citations
Caspases: the executioners of apoptosis
Biochemical Journal · 1997 · 4,725 citations
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