TY - JOUR
T1 - Signalling networks associated with urokinase-type plasminogen activator (uPA) and its inhibitor PAI-1 in breast cancer tissues
T2 - New insights from protein microarray analysis
AU - Wolff, Claudia
AU - Malinowsky, Katharina
AU - Berg, Daniela
AU - Schragner, Kerstin
AU - Schuster, Tibor
AU - Walch, Axel
AU - Bronger, Holger
AU - Höfler, Heinz
AU - Becker, Karl Friedrich
PY - 2011/1
Y1 - 2011/1
N2 - The urokinase-type plasminogen activator (uPA) and the main uPA inhibitor PAI-1 play important roles in cell migration and invasion in both physiological and pathological contexts. Both factors are clinically applicable predictive markers in node-negative breast cancer patients that are used to stratify patients for adjuvant chemotherapy. In addition to their classical functions in plasmin regulation, both factors are key components in cancer-related cell signalling. Such signalling cascades are well described in cell culture systems, but a better understanding of uPA- and PAI-1-associated signalling networks in clinical tissues is needed. We examined the expression of uPA, PAI-1, and 21 signalling molecules in 201 primary breast cancer tissues using protein microarrays. Expression of uPA was significantly correlated with the expression of ERK and Stat3, while expression of PAI-1 was correlated with the uPA receptor and Akt activation, presumably via integrin and HER-receptor signalling. Analysis of uPA expression did not reveal any significant correlation with staging, grading or age of the patients. The PAI-1 expression was correlated with nodal stage. Network monitoring for uPA and PAI-1 in breast cancer reveals interactions with main signalling cascades and extends the findings from cell culture experiments. Our results reveal possible mechanisms underlying cancer development.
AB - The urokinase-type plasminogen activator (uPA) and the main uPA inhibitor PAI-1 play important roles in cell migration and invasion in both physiological and pathological contexts. Both factors are clinically applicable predictive markers in node-negative breast cancer patients that are used to stratify patients for adjuvant chemotherapy. In addition to their classical functions in plasmin regulation, both factors are key components in cancer-related cell signalling. Such signalling cascades are well described in cell culture systems, but a better understanding of uPA- and PAI-1-associated signalling networks in clinical tissues is needed. We examined the expression of uPA, PAI-1, and 21 signalling molecules in 201 primary breast cancer tissues using protein microarrays. Expression of uPA was significantly correlated with the expression of ERK and Stat3, while expression of PAI-1 was correlated with the uPA receptor and Akt activation, presumably via integrin and HER-receptor signalling. Analysis of uPA expression did not reveal any significant correlation with staging, grading or age of the patients. The PAI-1 expression was correlated with nodal stage. Network monitoring for uPA and PAI-1 in breast cancer reveals interactions with main signalling cascades and extends the findings from cell culture experiments. Our results reveal possible mechanisms underlying cancer development.
KW - cell signalling
KW - formalin-fixed
KW - invasion
KW - migration
KW - paraffin-embedded tissue (FFPE)
KW - plasminogen activator inhibitor 1 (PAI-1)
KW - protein microarray
KW - reverse phase protein microarray
KW - urokinase-type plasminogen activator (uPA)
UR - http://www.scopus.com/inward/record.url?scp=78650012069&partnerID=8YFLogxK
U2 - 10.1002/path.2791
DO - 10.1002/path.2791
M3 - Article
C2 - 21125664
AN - SCOPUS:78650012069
SN - 0022-3417
VL - 223
SP - 54
EP - 63
JO - Journal of Pathology
JF - Journal of Pathology
IS - 1
ER -