1-Methyladenine (CAS 5142-22-3): Properties, Applications, and Synthesis for Research and Development
Discover the key properties and diverse applications of 1-Methyladenine, a vital compound for biochemical and pharmaceutical research.
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1-Methyladenine
1-Methyladenine is a critical nucleotide analog with significant biological activity. It functions by inhibiting the binding of adenine and guanine to the α-subunit of GTP, thereby disrupting essential cellular processes. This inhibition extends to the synthesis of DNA, RNA, and protein, achieved through its effect on ribosome assembly.
- Leverage the power of 1-methyladenine CAS 5142-22-3 properties for your advanced research projects. Understanding its chemical characteristics is key to unlocking its full potential in experimental settings.
- Explore innovative 1-methyladenine synthesis and applications that are driving breakthroughs in medicinal chemistry and life sciences.
- This compound serves as a potent nucleotide analog for cancer therapy research, offering new avenues for treatment development.
- As an inhibitor of DNA RNA protein synthesis, it is invaluable for studies investigating cellular mechanisms and drug targets.
Advantages Provided by the Product
Enhanced Research Accuracy
Utilizing 1-methyladenine for reproductive research allows scientists to precisely study the mechanisms of meiosis and ovulation inhibition, crucial for fertility studies.
Stable and Reliable
The compound's pale yellow crystalline powder chemical form, combined with its stability under normal temperatures and pressures, ensures consistent and reliable experimental outcomes.
High Purity for Critical Studies
With high purity 1-methyladenine chemical supplier options available, researchers can be confident in the integrity of their experiments, minimizing interference from impurities.
Key Applications
Biochemical Research
1-Methyladenine is an indispensable tool for dissecting cellular pathways, particularly in studies related to DNA replication, transcription, and translation, utilizing its role as an inhibitor of DNA RNA protein synthesis.
Pharmaceutical Intermediates
As a key component in drug discovery, its role as a nucleotide analog for cancer therapy research highlights its value in developing novel therapeutic agents.
Reproductive Biology Studies
Researchers employ 1-methyladenine for reproductive research to understand hormonal regulation and cellular events in oogenesis, contributing to advancements in fertility science.
Drug Development
The exploration of 1-methyladenine synthesis and applications is vital for the development of new drugs, particularly those targeting proliferative diseases and reproductive health.
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