TY - JOUR
T1 - The human cathelicidin, LL-37, induces granzyme-mediated apoptosis in cytotoxic T lymphocytes
AU - Mader, Jamie S.
AU - Marcet-Palacios, Marcelo
AU - Hancock, Robert E.W.
AU - Bleackley, R. Chris
N1 - Funding Information:
We acknowledge the support of Genome Canada , Genome BC and Genome Prairie for the ‘Pathogenomics of Innate Immunity’ research program, the Canadian Institute of Health Research (CIHR), the Canadian Cancer Society , and the Foundation for National Institutes of Health through the Grand Challenges in Global Health initiative. R.C.B. is a Medical Scientist of the AHFMR, J.M. was supported by a postdoctoral award from AHFMR . The authors have no conflicting financial interests.
PY - 2011/2/15
Y1 - 2011/2/15
N2 - LL-37 is a human cationic host defense peptide (antimicrobial peptide) belonging to the cathelicidin family of peptides. In this study, LL-37 was shown to kill stimulated CD8+ T cells (Cytotoxic T lymphocytes; CTLs) via apoptosis, while having no cytotoxic effect on non-stimulated CD8+ or CD4+ T cells or stimulated CD4+ T cells. Of interest, the CD8+ cells were much more sensitive to LL-37 than many other cell types. LL-37 exposure resulted in DNA fragmentation, chromatin condensation, and the release of both granzyme A and granzyme B from intracellular granules. The importance of granzyme family members in the apoptosis of CTLs following LL-37 treatment was analyzed by using C57BL/6 lymphocytes obtained from mice that were homozygous for null mutations in the granzyme B gene, the granzyme A gene, or both granzymes A and B. Granzymes A and B were both shown to play an important role in LL-37-induced apoptosis of CTLs. Further analysis revealed that apoptosis occurred primarily through granzyme A-mediated caspase-independent apoptosis. However, caspase-dependent cell death was also observed. This suggests that LL-37 induces apoptosis in CTLs via multiple different mechanisms, initiated by the LL-37-induced leakage of granzymes from cytolytic granules. Our results imply the existence of a novel mechanism of crosstalk between the inflammatory and adaptive immune systems. Cells such as neutrophils, at the site of a tumor for example, could influence the effector, activity of CTL through the secretion of LL-37.
AB - LL-37 is a human cationic host defense peptide (antimicrobial peptide) belonging to the cathelicidin family of peptides. In this study, LL-37 was shown to kill stimulated CD8+ T cells (Cytotoxic T lymphocytes; CTLs) via apoptosis, while having no cytotoxic effect on non-stimulated CD8+ or CD4+ T cells or stimulated CD4+ T cells. Of interest, the CD8+ cells were much more sensitive to LL-37 than many other cell types. LL-37 exposure resulted in DNA fragmentation, chromatin condensation, and the release of both granzyme A and granzyme B from intracellular granules. The importance of granzyme family members in the apoptosis of CTLs following LL-37 treatment was analyzed by using C57BL/6 lymphocytes obtained from mice that were homozygous for null mutations in the granzyme B gene, the granzyme A gene, or both granzymes A and B. Granzymes A and B were both shown to play an important role in LL-37-induced apoptosis of CTLs. Further analysis revealed that apoptosis occurred primarily through granzyme A-mediated caspase-independent apoptosis. However, caspase-dependent cell death was also observed. This suggests that LL-37 induces apoptosis in CTLs via multiple different mechanisms, initiated by the LL-37-induced leakage of granzymes from cytolytic granules. Our results imply the existence of a novel mechanism of crosstalk between the inflammatory and adaptive immune systems. Cells such as neutrophils, at the site of a tumor for example, could influence the effector, activity of CTL through the secretion of LL-37.
KW - Apoptosis
KW - Cytotoxic T lymphocytes
KW - Granzyme
KW - Host defense peptide
UR - https://www.scopus.com/pages/publications/78651460234
U2 - 10.1016/j.yexcr.2010.11.015
DO - 10.1016/j.yexcr.2010.11.015
M3 - Article
C2 - 21134367
AN - SCOPUS:78651460234
SN - 0014-4827
VL - 317
SP - 531
EP - 538
JO - Experimental Cell Research
JF - Experimental Cell Research
IS - 4
ER -