TY - JOUR
T1 - Tissue transgluaminase 2 expression in meningiomas
AU - Yuan, Liya
AU - Behdad, Amir
AU - Siegel, Matthew
AU - Khosla, Chaitan
AU - Higashikubo, Ryuji
AU - Rich, Keith M.
N1 - Funding Information:
Acknowledgments This work is supported by a grant from the Barnes-Jewish Hospital (to K.M.R.) and by a Grant from the NIH (R01 DK63158 to C.K.). In accordance with Washington University financial disclosure policy, K.M.R. has a relationship with Alvine Pharmaceutical,Inc with regard to KCC009. M.S. is a recipient of a predoctoral fellowship from the Stanford-NIH Biotechnology Training Grant. We thank Dr. Mark Watson for assistance in sharing specimens from the Washington Tumor Repository.
PY - 2008
Y1 - 2008
N2 - Meningiomas are common intracranial tumors that occur in extra-axial locations, most often over the cerebral convexities or along the skull-base. Although often histologically benign these tumors frequently present challenging clinical problems. Primary clinical management of patients with symptomatic tumors is surgical resection. Radiation treatment may arrest growth or delay recurrence of these tumors, however, meningioma cells are generally resistant to apoptosis after treatment with radiation. Tumor cells are known to alter their expression of proteins that interact in the ECM to provide signals important in tumor progression. One such protein, fibronectin, is expressed in elevated levels in the ECM in a number of tumors including meningiomas. We recently reported that levels of both extracellular fibronectin and tissue transglutaminase 2 (TG2) were increased in glioblastomas. We examined the expression of fibronectin and its association TG2 in meningiomas. Both fibronectin and TG2 were strongly expressed in all meningiomas studied. TG2 activity was markedly elevated in meningiomas, and TG2 was found to co-localize with fibronectin. Treatment of meningiomas with the small molecule TG2 inhibitor, KCC009, inhibited the binding of TG2 to fibronectin and blocked disposition of linear strands of fibronectin in the ECM. KCC009 treatment promoted apoptosis and enhanced radiation sensitivity both in cultured IOMM-Lee meningioma cells and in meningioma tumor explants. These findings support a potential protective role for TG2 in meningiomas.
AB - Meningiomas are common intracranial tumors that occur in extra-axial locations, most often over the cerebral convexities or along the skull-base. Although often histologically benign these tumors frequently present challenging clinical problems. Primary clinical management of patients with symptomatic tumors is surgical resection. Radiation treatment may arrest growth or delay recurrence of these tumors, however, meningioma cells are generally resistant to apoptosis after treatment with radiation. Tumor cells are known to alter their expression of proteins that interact in the ECM to provide signals important in tumor progression. One such protein, fibronectin, is expressed in elevated levels in the ECM in a number of tumors including meningiomas. We recently reported that levels of both extracellular fibronectin and tissue transglutaminase 2 (TG2) were increased in glioblastomas. We examined the expression of fibronectin and its association TG2 in meningiomas. Both fibronectin and TG2 were strongly expressed in all meningiomas studied. TG2 activity was markedly elevated in meningiomas, and TG2 was found to co-localize with fibronectin. Treatment of meningiomas with the small molecule TG2 inhibitor, KCC009, inhibited the binding of TG2 to fibronectin and blocked disposition of linear strands of fibronectin in the ECM. KCC009 treatment promoted apoptosis and enhanced radiation sensitivity both in cultured IOMM-Lee meningioma cells and in meningioma tumor explants. These findings support a potential protective role for TG2 in meningiomas.
KW - Brain tumor
KW - Cell death
KW - Radiation
KW - Tissue transglutaminase inhibitor
UR - http://www.scopus.com/inward/record.url?scp=53349120661&partnerID=8YFLogxK
U2 - 10.1007/s11060-008-9642-1
DO - 10.1007/s11060-008-9642-1
M3 - Article
C2 - 18587533
AN - SCOPUS:53349120661
SN - 0167-594X
VL - 90
SP - 125
EP - 132
JO - Journal of Neuro-Oncology
JF - Journal of Neuro-Oncology
IS - 2
ER -