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Updated: Aug 24, 2026

Identification of Cyclin-dependent Kinase 1 Specific Phosphorylation Sites by an In Vitro Kinase Assay
Published on: May 3, 2018
Identification of interaction partners and substrates of the cyclin A1-CDK2 complex
Sven Diederichs1, Nicole Bäumer, Ping Ji
1Department of Medicine, Hematology/Oncology, University of Münster, D-48129 Münster, Germany.
Abstract:
The CDK2-associated cyclin A1 is essential for spermatogenesis and contributes to leukemogenesis. The detailed molecular functions of cyclin A1 remain unclear, since the molecular networks involving cyclin A1-CDK2 have not been elucidated. Here, we identified novel cyclin A1/CDK2 interaction partners in a yeast triple-hybrid approach. Several novel proteins (INCA1, KARCA1, and PROCA1) as well as the known proteins GPS2 (G-protein pathway suppressor 2), Ku70, receptor for activated protein kinase C1/guanine nucleotide-binding protein beta-2-like-1, and mRNA-binding motif protein 4 were identified as interaction partners. These proteins link the cyclin A1-CDK2 complex to diverse cellular processes such as DNA repair, signaling, and splicing. Interactions were confirmed by GST pull-down assays and co-immunoprecipitation. We cloned and characterized the most frequently isolated unknown gene, which we named INCA1 (inhibitor of CDK interacting with cyclin A1). The nuclear INCA1 protein is evolutionarily conserved and lacks homology to any known gene. This novel protein and two other interacting partners served as substrates for the cyclin A1-CDK2 kinase complex. Cyclin A1 and all interaction partners were highly expressed in testis with varying degrees of tissue specificity. The highest expression levels were observed at different time points during testis maturation, whereas expression levels in germ cell cancers and infertile testes decreased. Taken together, we identified testicular interaction partners of the cyclin A1-CDK2 complex and studied their expression pattern in normal organs, testis development, and testicular malignancies. Thereby, we establish a new basis for future functional analyses of cyclin A1. We provide evidence that the cyclin A1-CDK2 complex plays a role in several signaling pathways important for cell cycle control and meiosis.
Insights
Researchers identified new proteins interacting with cyclin A1-CDK2, crucial for sperm development and cancer. These interactions link cyclin A1-CDK2 to DNA repair and cell signaling, offering new avenues for understanding its function.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Cyclin A1-CDK2 is vital for spermatogenesis and leukemogenesis.
- Its precise molecular functions and networks remain largely unelucidated.
- Understanding these interactions is key to deciphering cyclin A1's roles.
Purpose of the Study:
- To identify novel interaction partners of the cyclin A1-CDK2 complex.
- To characterize the functions and expression patterns of these partners.
- To establish a foundation for future functional analyses of cyclin A1.
Main Methods:
- Yeast triple-hybrid screening to identify interaction partners.
- GST pull-down assays and co-immunoprecipitation to confirm interactions.
- Cloning and characterization of novel interacting genes, including INCA1.
Main Results:
- Identified novel partners (INCA1, KARCA1, PROCA1) and known proteins (GPS2, Ku70, RAP1, MBNL4).
- These partners link cyclin A1-CDK2 to DNA repair, signaling, and splicing.
- Novel protein INCA1 is nuclear, conserved, and a substrate for cyclin A1-CDK2.
- Cyclin A1 and partners show specific expression in the testis, decreasing in cancers and infertility.
Conclusions:
- Established a network of testicular interaction partners for the cyclin A1-CDK2 complex.
- Demonstrated the involvement of cyclin A1-CDK2 in cell cycle control and meiosis via identified pathways.
- Provided a basis for further functional studies of cyclin A1 in normal and pathological conditions.
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