Abstract
A cytotoxic T lymphocyte (CTL) characteristically kills target cells one after the other by releasing toxic granules that contain one or more cytolytic components. To determine how CTLs avoid destroying themselves when they release granules and lyse target cells, 7 murine CD8+ CTL cell lines were compared with 19 other cell lines for susceptibility to lysis by the isolated toxic granules. Murine CD8+ CTLs were clearly the most resistant cells: granules did not lyse them even after they were exposed to azide, cyanide, and 2-deoxyglucose, conditions that were found to enhance the susceptibility of all the other cells tested, including other T cells. Thus, resistance of CD8+ CTLs to cytotoxic granules appears to be independent of cellular ATP. To reconcile these findings with other observations that, under some circumstances, CTLs can be lysed by other CTLs, we suggest a model in which a CTL releases only a limited proportion of its toxic granules at each antigen-specific encounter with a target cell; the amount released is sufficient to kill most target cells but to leave the CTL undamaged and with enough granules to attack other target cells.
MeSH Terms
Adenosine Triphosphate/metabolism
Animals
Cell Line
Cell Membrane/immunology
Cytoplasmic Granules/immunology
Cytotoxicity, Immunologic
Fibroblasts/immunology
Hemolysis
Ion Channels/physiology
Killer Cells, Natural/immunology
Membrane Glycoproteins
Membrane Proteins/physiology
Mice
Perforin
Pore Forming Cytotoxic Proteins
T-Lymphocytes, Cytotoxic/immunology,ultrastructure
T-Lymphocytes, Helper-Inducer/immunology
Tumor Cells, Cultured
Chemicals
Ion Channels
Membrane Glycoproteins
Membrane Proteins
Pore Forming Cytotoxic Proteins
Perforin
Adenosine Triphosphate
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Verret C R
Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.
Firmenich A A
Kranz D M
Eisen H N
References (29)
29 references, click to expand
-
Granules of cytolytic T-lymphocytes contain two serine esterases.
EMBO J. 1986 Jul;5(7):1595-600
PMID: 3488903
-
Resistance of cytotoxic T lymphocytes to lysis by a clone of cytotoxic T lymphocytes.
Proc Natl Acad Sci U S A. 1987 May;84(10):3375-9
PMID: 2953028
-
Morphological observations on the contact-induced lysis of target cells.
Eur J Immunol. 1973 Jan;3(1):32-7
PMID: 4197969
-
Evidence for direct linkage between antigen recognition and lytic expression in effector T cells.
J Exp Med. 1976 Mar 1;143(3):684-9
PMID: 1082495
-
Monoclonal cytolytic T-cell lines.
J Exp Med. 1979 Jan 1;149(1):273-8
PMID: 310861
-
Purification of the H-2Kk molecule of the murine major histocompatibility complex.
J Biol Chem. 1979 Sep 25;254(18):8713-6
PMID: 479148
-
A new mouse myeloma cell line that has lost immunoglobulin expression but permits the construction of antibody-secreting hybrid cell lines.
J Immunol. 1979 Oct;123(4):1548-50
PMID: 113458
-
Role of oxygen-dependent mechanisms in antibody-induced lysis of tumor cells by activated macrophages.
J Exp Med. 1980 Jul 1;152(1):198-208
PMID: 6995553
-
Mechanisms of immune lysis. III. Characterization of the nature and kinetics of the cytotoxic T lymphocyte-induced nuclear lesion in the target.
J Immunol. 1982 May;128(5):2087-94
PMID: 6977583
-
Inhibition of cytotoxic T lymphocyte activity by concanavalin A.
J Immunol. 1982 Oct;129(4):1372-6
PMID: 6980931
-
Subcellular localization of the b-cytochrome component of the human neutrophil microbicidal oxidase: translocation during activation.
J Cell Biol. 1983 Jul;97(1):52-61
PMID: 6408102
-
Elimination of complement channels from the plasma membranes of U937, a nucleated mammalian cell line: temperature dependence of the elimination rate.
J Immunol. 1983 Sep;131(3):1411-5
PMID: 6309963
-
Cytolytic activity of purified cytoplasmic granules from cytotoxic rat large granular lymphocyte tumors.
J Exp Med. 1984 Jul 1;160(1):75-93
PMID: 6736872
-
Cytolytic T cell granules. Isolation, structural, biochemical, and functional characterization.
J Exp Med. 1984 Sep 1;160(3):695-710
PMID: 6332169
-
Cloned helper T cells can kill B lymphoma cells in the presence of specific antigen: Ia restriction and cognate vs. noncognate interactions in cytolysis.
Eur J Immunol. 1984 Oct;14(10):878-86
PMID: 6208035
-
Protein-antigen specific Ia-restricted cytolytic T cells: analysis of frequency, target cell susceptibility, and mechanism of cytolysis.
J Immunol. 1985 Jul;135(1):25-33
PMID: 2582034
-
Isolation of a lytic, pore-forming protein (perforin) from cytolytic T-lymphocytes.
J Biol Chem. 1985 Aug 5;260(16):9069-72
PMID: 3874868
-
T-Lymphocyte-mediated cytolysis as an excitatory process of the target. I. Evidence that the target cell may be the site of Ca2+ action.
Cell Immunol. 1985 Oct 1;95(1):113-23
PMID: 3928177
-
The cell biology of macrophage activation.
Annu Rev Immunol. 1984;2:283-318
PMID: 6100475
-
Mechanism of lymphocyte-mediated cytotoxicity.
Annu Rev Immunol. 1985;3:31-58
PMID: 3904772
-
Cytolytic activity of antigen-specific T cells with helper phenotype.
J Immunol. 1986 Jan;136(1):44-7
PMID: 2415627
-
Purification and characterization of a cytolytic pore-forming protein from granules of cloned lymphocytes with natural killer activity.
Cell. 1986 Mar 28;44(6):849-59
PMID: 2420467
-
Molecular mechanisms of cytolysis by complement and by cytolytic lymphocytes.
J Cell Biochem. 1986;30(2):133-70
PMID: 2422185
-
Elimination of terminal complement complexes in the plasma membrane of nucleated cells: influence of extracellular Ca2+ and association with cellular Ca2+.
J Immunol. 1986 Jul 1;137(1):263-70
PMID: 3711667
-
A functional gamma gene formed from known gamma-gene segments is not necessary for antigen-specific responses of murine cytotoxic T lymphocytes.
Nature. 1986 Jun 26-Jul 2;321(6073):878-80
PMID: 3487735
-
Self-sparing of long-term in vitro-cloned or uncloned cytotoxic T lymphocytes.
J Exp Med. 1986 Sep 1;164(3):962-7
PMID: 3489065
-
Serine esterase in cytolytic T lymphocytes.
Nature. 1986 Aug 21-27;322(6081):740-3
PMID: 3489187
-
Isolation and characterization of a serine esterase from cytolytic T cell granules.
Cell. 1986 Oct 24;47(2):183-94
PMID: 3094960
-
Tumor immunity in vitro: destruction of a mouse ascites tumor through a cycling pathway.
Science. 1972 Aug 4;177(4047):433-4
PMID: 5043143