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Published on: May 17, 2019
A Pair of Prognostic Biomarkers in Triple-Negative Breast Cancer: KLK10 and KLK11 mRNA Expression
Yueyang Liu1,2, Weiwei Gong1,3, Sarah Preis1
1Clinical Research Unit, Department of Obstetrics and Gynecology, Technical University of Munich, 81675 Munich, Germany.
Abstract:
Triple-negative breast cancer (TNBC) is an aggressive breast cancer subtype with poor patient prognosis and limited therapeutic options. A lack of prognostic biomarkers and therapeutic targets fuels the need for new approaches to tackle this severe disease. Extracellular matrix degradation, release, and modulation of the activity of growth factors/cytokines/chemokines, and the initiation of signaling pathways by extracellular proteolytic networks, have been identified as major processes in the carcinogenesis of breast cancer. Members of the kallikrein-related peptidase (KLK) family contribute to these tumor-relevant processes, and are associated with breast cancer progression and metastasis. In this study, the clinical relevance of mRNA expression of two members of this family, KLK10 and KLK11, has been evaluated in TNBC. For this, their expression levels were quantified in tumor tissue of a large, well-characterized patient cohort (n = 123) via qPCR. Although, in general, the overall expression of both factors are lower in tumor tissue of breast cancer patients (encompassing all subtypes) compared to normal tissue of healthy donors, in the TNBC subtype, expression is even increased. In our cohort, a significant, positive correlation between the expression levels of both KLKs was detected, indicating a coordinate expression mode of these proteases. Elevated KLK10 and KLK11 mRNA levels were associated with poor patient prognosis. Moreover, both factors were found to be independent of other established clinical factors such as age, lymph node status, or residual tumor mass, as determined by multivariable Cox regression analysis. Thus, both proteases, KLK10 and KLK11, may represent unfavorable prognostic factors for TNBC patients and, furthermore, appear as promising potential targets for therapy in TNBC.
Insights
This study reveals that elevated KLK10 and KLK11 mRNA levels in triple-negative breast cancer (TNBC) correlate with poor patient prognosis. These kallikrein-related peptidases may serve as new therapeutic targets for TNBC.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Triple-negative breast cancer (TNBC) is an aggressive subtype with limited treatment options and a lack of prognostic biomarkers.
- Extracellular proteolytic networks, including kallikrein-related peptidases (KLKs), play roles in breast cancer progression and metastasis.
- KLK10 and KLK11 are members of the KLK family implicated in tumor-relevant processes.
Purpose of the Study:
- To evaluate the clinical relevance of KLK10 and KLK11 mRNA expression in TNBC.
- To determine if KLK10 and KLK11 expression levels are associated with patient prognosis in TNBC.
- To investigate KLK10 and KLK11 as potential therapeutic targets for TNBC.
Main Methods:
- Quantitative real-time PCR (qPCR) was used to measure KLK10 and KLK11 mRNA expression in tumor tissue from a cohort of 123 TNBC patients.
- Statistical analyses, including correlation and multivariable Cox regression, were performed to assess the relationship between KLK expression and clinical factors.
- Expression levels were compared between tumor tissue and normal tissue, and across different breast cancer subtypes.
Main Results:
- KLK10 and KLK11 mRNA expression was significantly increased in TNBC tissue compared to normal tissue.
- Elevated KLK10 and KLK11 mRNA levels were positively correlated and associated with poor patient prognosis in TNBC.
- KLK10 and KLK11 expression were independent prognostic factors, unrelated to age, lymph node status, or tumor mass.
Conclusions:
- KLK10 and KLK11 are upregulated in TNBC and serve as independent indicators of unfavorable prognosis.
- These KLKs represent promising potential therapeutic targets for triple-negative breast cancer.
- Further research into KLK-targeted therapies could improve outcomes for TNBC patients.

