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Catalog Number:
00587
CAS Number:
81921-35-9
N6-Methyladenosine-5'-monophosphate sodium salt
Purity:
≥ 98% (HPLC)
Documents
$55.40 /5MG
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Product Information

N6-Methyladenosine-5'-monophosphate sodium salt is a vital nucleotide derivative that plays a significant role in various biological processes. This compound is recognized for its applications in RNA research, particularly in studies focusing on epitranscriptomics, where it serves as a crucial methylation marker. Researchers utilize N6-Methyladenosine-5'-monophosphate sodium salt to investigate gene expression regulation, RNA stability, and the mechanisms of mRNA modification. Its unique properties enable scientists to explore the intricate relationships between RNA modifications and cellular functions, making it an essential tool in molecular biology and biochemistry.

In addition to its research applications, N6-Methyladenosine-5'-monophosphate sodium salt is also being explored for its potential therapeutic implications. Its ability to influence RNA metabolism positions it as a candidate for developing novel treatments targeting various diseases, including cancer and neurological disorders. By providing insights into RNA modifications, this compound opens new avenues for therapeutic interventions, offering researchers a powerful resource in the quest for innovative solutions in medicine.

CAS Number
81921-35-9
Purity
≥ 98% (HPLC)
Molecular Formula
C11H14N5O7PNa2
Molecular Weight
405.21
MDL Number
MFCD28098191
Appearance
White to off-white free flowing powder
Conditions
Store at ≤ -4 °C
General Information
CAS Number
81921-35-9
Purity
≥ 98% (HPLC)
Molecular Formula
C11H14N5O7PNa2
Molecular Weight
405.21
MDL Number
MFCD28098191
Appearance
White to off-white free flowing powder
Conditions
Store at ≤ -4 °C
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

N6-Methyladenosine-5'-monophosphate sodium salt is widely utilized in research focused on:

  • RNA Modification Studies: This compound is essential for studying the role of mRNA modifications in gene expression and regulation, providing insights into cellular processes.
  • Epitranscriptomics: It plays a critical role in epitranscriptomic research, helping scientists understand how RNA modifications affect cellular functions and disease mechanisms.
  • Drug Development: Researchers use this compound to explore new therapeutic targets in cancer and other diseases, as it can influence RNA stability and translation.
  • Biotechnology Applications: It is utilized in the development of RNA-based technologies, such as mRNA vaccines, enhancing the efficacy and stability of the RNA used in these applications.
  • Diagnostics: The compound is valuable in creating diagnostic tools for detecting RNA modifications, which can serve as biomarkers for various diseases.

Citations