Understanding Pyrimidine Biosynthesis: The Role of L-Dihydroorotic Acid
Pyrimidine biosynthesis is a fundamental metabolic pathway essential for the production of DNA and RNA, vital for all cellular life. This complex process involves a series of enzymatic reactions, beginning with simple precursors and culminating in the formation of uracil, thymine, and cytosine. At the heart of this pathway lies a series of key intermediates, one of which is L-Dihydroorotic Acid (CAS 5988-19-2).
L-Dihydroorotic Acid, a white to off-white crystalline powder, is a crucial intermediate in the de novo synthesis of pyrimidines. Its significance is amplified by its role as a substrate for the enzyme dihydroorotate dehydrogenase (DHODH). This enzyme catalyzes the reversible oxidation of L-Dihydroorotic Acid to orotic acid, a rate-limiting step in the pyrimidine biosynthetic pathway. Understanding this conversion is paramount for researchers investigating cellular growth, DNA replication, and repair mechanisms.
For scientists and product formulators, sourcing high-quality L-Dihydroorotic Acid is critical. When you buy L-Dihydroorotic Acid from a reputable manufacturer in China, you ensure the purity and consistency required for accurate biochemical research. Companies that specialize in supplying chemicals for R&D, like those providing L-Dihydroorotic Acid with a purity of 98% or higher, are invaluable partners for academic institutions and pharmaceutical companies.
The applications of L-Dihydroorotic Acid extend to various research areas. It is frequently used in enzymology studies to characterize DHODH, explore its inhibition by various compounds, and understand its role in diseases such as cancer and autoimmune disorders. Researchers may also use it to study the regulation of nucleotide synthesis, the impact of genetic mutations on metabolic pathways, and to develop potential diagnostic biomarkers. The availability of L-Dihydroorotic Acid from reliable suppliers facilitates progress in these critical fields.
When seeking to purchase L-Dihydroorotic Acid, it is essential to consider the supplier's commitment to quality control and their ability to provide detailed specifications, such as its CAS number (5988-19-2) and purity levels. Partnering with a trusted manufacturer ensures that your research is supported by compounds that meet the highest standards, enabling you to focus on groundbreaking discoveries in pyrimidine metabolism.
Perspectives & Insights
Agile Reader One
“Researchers may also use it to study the regulation of nucleotide synthesis, the impact of genetic mutations on metabolic pathways, and to develop potential diagnostic biomarkers.”
Logic Vision Labs
“The availability of L-Dihydroorotic Acid from reliable suppliers facilitates progress in these critical fields.”
Molecule Origin 88
“When seeking to purchase L-Dihydroorotic Acid, it is essential to consider the supplier's commitment to quality control and their ability to provide detailed specifications, such as its CAS number (5988-19-2) and purity levels.”