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Published on: June 6, 2017
Direct interactions with both p27 and Cdk2 regulate Spy1-mediated proliferation in vivo and in vitro
Mohammad Al Sorkhy1, Bre-Anne Fifield2, Dorothy Myers3
1a Al-Ain University of Science and Technology, College of Pharmacy , Al Ain , UAE.
Abstract:
Families of cyclin-like proteins have emerged that bind and activate cyclin dependent kinases (Cdk)s, directing the phosphorylation of noncanonical Cdk substrates. One of these proteins, Spy1, has demonstrated the unique ability to directly bind and activate both Cdk1 and Cdk2, as well as binding and promoting the degradation of at least one Cdk inhibitor, p27(Kip1). Spy1 accelerates somatic cell growth and proliferation and is implicated in a number of human cancers including the breast, brain and liver. Herein we isolate key residues mediating the direct interaction with p27. We use mutants of Spy1 to determine the physiological role of direct interactions with distinct binding partners Cdk2 and p27. We demonstrate that disrupting the direct interaction with either Spy1 binding partner decreased endogenous activity of Cdk2, as well as Spy1-mediated proliferation. However, only the direct interaction with p27 was essential for Spy1-mediated effects on p27 stability. In vivo neither mutation completely prevented tumorigenesis, although each mutation slowed the rate of Spy1-mediated tumorigenesis and decreased overall tumor volumes. This work supports the conclusion that direct interaction with both p27 and Cdk2 contribute to Spy1-mediated effects on cell growth. It is important to elucidate the dynamics of these interactions and to consider these data when assessing functional outcomes.
Insights
Spy1 protein directly interacts with Cdk2 and p27, impacting cell growth and cancer. Disrupting these interactions slows tumor growth, highlighting their importance in cancer progression.
Area of Science:
- Cellular Biology
- Molecular Biology
- Cancer Research
Background:
- Cyclin-dependent kinases (Cdks) regulate cell cycle progression.
- Spy1 is a novel cyclin-like protein that activates Cdks and promotes cell proliferation.
- Spy1 is implicated in various human cancers, including breast, brain, and liver cancers.
Purpose of the Study:
- To identify key residues mediating Spy1 interaction with p27.
- To determine the physiological role of Spy1's direct interactions with Cdk2 and p27.
- To elucidate Spy1's contribution to cell growth and tumorigenesis.
Main Methods:
- Site-directed mutagenesis of Spy1 to create interaction-deficient mutants.
- Assays to measure Cdk2 activity and p27 stability.
- In vivo tumorigenesis models to assess the impact of Spy1 mutations on tumor growth.
Main Results:
- Disrupting Spy1 interaction with either Cdk2 or p27 reduced Cdk2 activity and Spy1-mediated proliferation.
- Only disruption of the Spy1-p27 interaction affected p27 stability.
- Mutations slowed Spy1-mediated tumorigenesis and reduced tumor volume, but did not prevent it entirely.
Conclusions:
- Direct interactions of Spy1 with both Cdk2 and p27 are crucial for Spy1-mediated cell growth.
- Spy1's interaction with p27 is essential for regulating p27 stability.
- Targeting Spy1 interactions may offer therapeutic strategies for Spy1-driven cancers.
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