TY - JOUR
T1 - Nitric oxide promotes resistance to tumor suppression by CTLs
AU - Su, Zhanhai
AU - Kuball, Jürgen
AU - Barreiros, Ana Paula
AU - Gottfried, Daniela
AU - Ferreira, Edite Antunes
AU - Theobald, Matthias
AU - Galle, Peter R.
AU - Strand, Dennis
AU - Strand, Susanne
PY - 2006/4/1
Y1 - 2006/4/1
N2 - Many human tumors express inducible NO synthetase (NOS2), but the roles of NO in tumor development are not fully elucidated. An important step during tumor development is the acquisition of apoptosis resistance. We investigated the dose-dependent effects of endogenously produced NO on apoptosis using ecdysone-inducible NOS2 cell lines. Our results show that short-term NOS2 expression enhances CB95-mediated apoptosis and T cell cytotoxicity dose dependently. Furthermore, we could show that during chronic exposure to NO, besides the primary cytotoxic NO effect, there is selection of cell clones resistant to NO that show cross-resistance to CD95-induced apoptosis and the killing by CTLs. We propose that NO production could initially act as an autocrine suicide or paracrine killing mechanism in cells undergoing malignant transformation. However, once failed, the outcome is fatal. NO promotes tumor formation by enhancing the selection of cells that can evade immune attack by acquiring apoptosis resistance.
AB - Many human tumors express inducible NO synthetase (NOS2), but the roles of NO in tumor development are not fully elucidated. An important step during tumor development is the acquisition of apoptosis resistance. We investigated the dose-dependent effects of endogenously produced NO on apoptosis using ecdysone-inducible NOS2 cell lines. Our results show that short-term NOS2 expression enhances CB95-mediated apoptosis and T cell cytotoxicity dose dependently. Furthermore, we could show that during chronic exposure to NO, besides the primary cytotoxic NO effect, there is selection of cell clones resistant to NO that show cross-resistance to CD95-induced apoptosis and the killing by CTLs. We propose that NO production could initially act as an autocrine suicide or paracrine killing mechanism in cells undergoing malignant transformation. However, once failed, the outcome is fatal. NO promotes tumor formation by enhancing the selection of cells that can evade immune attack by acquiring apoptosis resistance.
UR - http://www.scopus.com/inward/record.url?scp=33646069687&partnerID=8YFLogxK
U2 - 10.4049/jimmunol.176.7.3923
DO - 10.4049/jimmunol.176.7.3923
M3 - Article
C2 - 16547226
AN - SCOPUS:33646069687
SN - 0022-1767
VL - 176
SP - 3923
EP - 3930
JO - Journal of Immunology
JF - Journal of Immunology
IS - 7
ER -