Cell Cycle/Checkpoint


The cell cycle is consisted of 4 main phases: Gap 1 (G1), DNA replication (S), Gap 2 (G2), and mitosis (M). There are “checkpoints” mechanism regulates the transition between these phases, at the G1/S boundary, in the S-phase and during G2/M phases. Cell can only pass through these checkpoints when signaling factors are activated and free of DNA damage. Important proteins that control cell cycle events and checkpoints are cullins, cyclins, cyclin-dependent kinases (Cdks), p53 and their inhibitors etc. Cdks family (Cdk2, Cdk3, Cdk4 and Cdk6) are Ser/Thr kinases that regulate cell cycle progression in association with cyclin binding partners (cyclin D, cyclin E and cyclin A) during all four phases. p53 halts the cell cycle if the DNA is damaged and allowing time for DNA repair to progress; it can also initiate apoptosis if DNA damage is too severe to be repaired.
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C8970 Gemifloxacin mesylateSummary: Gemifloxacin mesylate is a fluoroquinolone antibacterial agent targeting DNA gyrase and topoisomerase IV, widely utilized in microbiology and bacterial resistance mechanism research. -
C9037 3'-Fluoro-3'-deoxythymidine (Alovudine)Summary: 3'-Fluoro-3'-deoxythymidine (Alovudine) is a fluorinated thymidine nucleoside analog that inhibits reverse transcriptase and is utilized in antiviral mechanism and nucleoside metabolism research. -
N2944 L(+)-Asparagine monohydrateSummary: L(+)-Asparagine monohydrate is a proteinogenic amino acid reagent supporting amino acid metabolism and protein biosynthesis studies in cell biology and biochemical research. -
C9062 THZ1 2HClSummary: A selective covalent allosteric CDK7 inhibitor for transcription and cell cycle research in scientific studies. -
C9096 6-Mercaptopurine hydrateSummary: A small-molecule nucleoside metabolism inhibitor for in vitro biochemical and cellular research. -
C9097 BAY-1816032Summary: A selective BUB1 inhibitor chemical probe, suitable for cell cycle and cancer biology research. -
C9098 Samuraciclib HClSummary: An ATP-competitive CDK7 inhibitor for cell cycle and transcription research. -
C9109 MYCi975Summary: A small-molecule MYC:MAX dimer PPI modulator for research use, intervening in the MYC transcriptional network. -
C9113 SimurosertibSummary: A selective ATP-competitive CDC7 inhibitor for studying DNA replication and the cell cycle. -
C9116 AtuveciclibSummary: A highly selective CDK9/PTEFb inhibitor, suitable for research on signaling and transcriptional regulation.
