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HER2-targeting antibodies modulate the cyclin-dependent kinase inhibitor p27Kip1 via multiple signaling pathways
Xiao-Feng Le1, Franz Pruefer, Robert C Bast
1Department of Experimental Therapeutics, Division of Cancer Medicine, University of Texas M.D. Anderson Cancer Center, Houston, Texas, USA.
Abstract:
Anti-HER2 antibody trastuzumab is emerging as a frontline therapy for patients with metastatic breast cancers that overexpress HER2. Understanding the molecular mechanisms by which the antibody inhibits tumor growth should permit the design of even more effective trastuzumab-based protocols. Several groups including our own have demonstrated that induction of cyclin-dependent kinase (CDK) inhibitor p27Kip1 protein is one of the key mechanisms of action of HER2-targeting antibodies. In this review, we discuss currently available data regarding the multiple signaling targets and pathways by which HER2-targeting antibodies upregulate p27Kip1 protein in breast cancer cells that overexpress HER2. Anti-HER2 antibodies inhibit HER2-mediated signaling in cancer cells, ultimately upregulating the levels and activity of p27Kip1 protein. At least six signaling targets and pathways are modulated by trastuzumab. By inhibiting CDK2 and decreasing Thr187 phosphorylation of p27Kip1, trastuzumab abrogates targeting of SCF-ubiquitin E3 ligase and minimizes proteasome degradation of p27Kip1. By inhibiting AKT and human kinase interacting stathmin (hKIS), trastuzumab blocks Thr157-, Thr198- and Ser10-induced p27Kip1 translocation from the nucleus to the cytosol, which increases the inhibitory effect of p27Kip1. By inhibiting Jun activation domain-binding protein 1 (Jab1) trastuzumab increases nuclear retention of p27Kip1. By inhibiting cyclin D and c-Myc, trastuzumab releases the sequestrated p27bKip1 protein from cyclin D-CDK4/6 complexes and increase the effect of p27Kip1 on CDK2-cyclin E complexes. By stimulating minibrain related kinase (MIRK), trastuzumab stabilizes p27Kip1 in the nucleus, which increases inhibitory action of p27Kip1 on CDK2. The targets and pathways affected by trastuzumab work in concert to maximize the expression and inhibitory effect of p27Kip1, which leads to cell cycle G1 arrest and growth inhibition.
Insights
Trastuzumab, an anti-HER2 antibody, inhibits HER2-positive breast cancer growth by upregulating the cyclin-dependent kinase inhibitor p27Kip1 protein. It modulates multiple signaling pathways to increase p27Kip1 levels and activity, leading to cell cycle arrest.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Trastuzumab is a key therapy for HER2-overexpressing metastatic breast cancer.
- Understanding trastuzumab's molecular mechanisms can optimize treatment protocols.
- Upregulation of cyclin-dependent kinase (CDK) inhibitor p27Kip1 is a critical action of HER2-targeting antibodies.
Purpose of the Study:
- To review the signaling targets and pathways through which HER2-targeting antibodies, specifically trastuzumab, upregulate p27Kip1 protein.
- To elucidate how these mechanisms contribute to the inhibition of HER2-positive breast cancer cell growth.
Main Methods:
- Review of existing scientific literature on trastuzumab's molecular mechanisms.
- Analysis of signaling pathways modulated by trastuzumab, focusing on p27Kip1 regulation.
- Identification of key protein interactions and cellular processes affected by trastuzumab.
Main Results:
- Trastuzumab inhibits HER2-mediated signaling, leading to increased p27Kip1 levels and activity.
- At least six signaling pathways are modulated by trastuzumab, including inhibition of CDK2, AKT, hKIS, Jab1, cyclin D, and c-Myc.
- Trastuzumab also stimulates minibrain related kinase (MIRK), enhancing p27Kip1 stabilization and nuclear retention.
Conclusions:
- Trastuzumab orchestrates multiple signaling events to maximize p27Kip1 expression and inhibitory function.
- These actions result in cell cycle G1 arrest and significant inhibition of tumor growth in HER2-positive breast cancer.
- The comprehensive understanding of these pathways supports the development of enhanced trastuzumab-based therapeutic strategies.
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