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Taspase1 cleaves MLL1 to activate cyclin E for HER2/neu breast tumorigenesis
Yiyu Dong1, Brian A Van Tine2, Toshinao Oyama1
1Human Oncology & Pathogenesis Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10065, USA.
Abstract:
Taspase1, a highly conserved threonine protease, cleaves nuclear transcriptional regulators mixed-lineage leukemia (MLL, MLL1), MLL2, TFIIA, and ALF to orchestrate a wide variety of biological processes. In vitro studies thus far demonstrated that Taspase1 plays important roles in the proliferation of various cancer cell lines, including HER2-positive breast cancer cells. To investigate the role of Taspase1 in breast tumorigenesis in vivo, we deleted Taspase1 from mouse mammary glands by generating MMTV-neu;MMTV-cre;Tasp1(F/-) mice. We demonstrate that initiation of MMTV-neu- but not MMTV-wnt-driven breast cancer is blocked in the absence of Taspase1. Importantly, Taspase1 loss alone neither impacts normal development nor pregnancy physiology of the mammary gland. In mammary glands Taspase1 deficiency abrogates MMTV-neu-induced cyclins E and A expression, thereby preventing tumorigenesis. The mechanisms were explored in HER2-positive breast cancer cell line BT474 and HER2-transformed MCF10A cells and validated using knockdown-resistant Taspase1. As Taspase1 was shown to cleave MLL which forms complexes with E2F transcription factors to regulate Cyclins E, A, and B expression in mouse embryonic fibroblasts (MEFs), we investigated whether the cleavage of MLL by Taspase1 constitutes an essential in vivo axis for HER2/neu-induced mammary tumorigenesis. To this end, we generated MMTV-neu;MLL(nc/nc) transgenic mice that carry homozygous non-cleavable MLL alleles. Remarkably, these mice are also protected from HER2/neu-driven breast tumorigenesis. Hence, MLL is the primary Taspase1 substrate whose cleavage is required for MMTV-neu-induced tumor formation. As Taspase1 plays critical roles in breast cancer pathology, it may serve as a therapeutic target for HER2-positive human breast cancer.
Insights
Taspase1 protease is crucial for HER2/neu-driven breast cancer initiation by cleaving MLL. Blocking Taspase1 or MLL cleavage prevents tumor formation, identifying Taspase1 as a potential therapeutic target for HER2-positive breast cancer.
Area of Science:
- Molecular Biology
- Cancer Research
- Protease Function
Background:
- Taspase1 is a conserved threonine protease involved in cleaving nuclear transcriptional regulators.
- In vitro studies suggest Taspase1 promotes proliferation in cancer cell lines, including HER2-positive breast cancer.
- The in vivo role of Taspase1 in breast tumorigenesis requires further investigation.
Purpose of the Study:
- To investigate the in vivo role of Taspase1 in HER2/neu-driven breast cancer initiation and progression.
- To determine if MLL cleavage by Taspase1 is essential for mammary tumorigenesis.
- To evaluate Taspase1 as a potential therapeutic target for HER2-positive breast cancer.
Main Methods:
- Generated MMTV-neu;MMTV-cre;Tasp1(F/-) mice to delete Taspase1 in mammary glands.
- Generated MMTV-neu;MLL(nc/nc) transgenic mice with non-cleavable MLL alleles.
- Utilized HER2-positive breast cancer cell lines (BT474) and HER2-transformed cells (MCF10A) for mechanistic studies.
Main Results:
- Taspase1 deletion blocked MMTV-neu-driven breast cancer initiation without affecting normal mammary gland development or pregnancy.
- Taspase1 deficiency abrogated MMTV-neu-induced cyclin E and A expression, preventing tumorigenesis.
- Mice with non-cleavable MLL alleles were protected from HER2/neu-driven breast tumorigenesis, identifying MLL as the key Taspase1 substrate.
Conclusions:
- Taspase1 is essential for HER2/neu-induced mammary tumorigenesis, primarily through the cleavage of MLL.
- The Taspase1-MLL axis is critical for regulating cyclins E, A, and B expression in vivo.
- Taspase1 represents a promising therapeutic target for HER2-positive breast cancer.
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