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Uracil

Uracil was first discovered in 1900 by German chemist Robert Behrend. Its name is derived from the Greek word "ouron," meaning urine, because uracil was originally isolated from urine. This pyrimidine derivative was subsequently recognized as an essential component of ribonucleic acid (RNA), one of the two major nucleic acids essential for life. Together with adenine, guanine, and cytosine, uracil forms the basic building block of RNA, which carries genetic information from DNA and directs protein synthesis within cells.

Unlike DNA, which contains thymine, RNA utilizes uracil as the complementary base to adenine during transcription. This substitution enables RNA to act as a messenger, translating the genetic instructions encoded in DNA into proteins. This critical role makes uracil key in the complex mechanisms of gene expression and cellular function.

The importance of uracil is not limited to its fundamental role in genetics. It is a cornerstone of a variety of scientific disciplines and practical applications. The involvement of uracil in RNA makes it a key target for research in molecular biology and genetics. Research often focuses on understanding the structure, function, and regulation of RNA, aiming to shed light on diseases that stem from genetic abnormalities.

Uracil-based compounds have found applications in medicine, particularly in chemotherapy. Drugs such as fluorouracil (5-FU) and capecitabine are widely used in cancer treatments, interfering with RNA and DNA synthesis in rapidly dividing cancer cells, thereby inhibiting tumor growth.

In agriculture, uracil is integral to the development of genetically modified crops. RNA interference (RNAi) technology uses uracil-containing RNA molecules to silence specific genes in plants, providing targeted insect resistance and increasing crop yields.

In addition to biology, uracil derivatives are used in industrial processes such as dye production and chemical synthesis. Their diverse chemical properties contribute to a variety of applications in manufacturing and materials science.

Brand: Soarwin

CAS No.: 66-22-8

EC Number: 200-621-9

Molecular Formula: C4H4N2O2

Density: 1.321 g/cm3

Melting point: >300°C(lit.)

Boiling point: 440.5°C at 760 mmHg

Flash point: 220.2 ºC

Ubicación : No. 10-11, Building 4, Zhongyu Duhui First Station, Longxi Street, Yubei District, Chongqing, 401120 Chongqing,
Persona a contactar : Shakira Xia, +15 2 82 60 18 74

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Huaren Has Great Expertise in Amidites & Nucleotides & Nucleosides
Huaren Has Great Expertise in Amidites & Nucleotides & Nucleosides

Thursday 27 July 2023

Amidites are compounds used in the synthesis of oligonucleotides, which are short chains of nucleotides that make up DNA and RNA molecules. The chemical structure of amidites allows them to easily bind to other molecules and form the backbone of an oligonucleotide chain. Nucleotides...

WUHU HUAREN SCIENCE AND TECHNOLOGY CO., LTD.

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China 241002 Joyas / Accesorios

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HUAREN NUCLEOSIDES
HUAREN NUCLEOSIDES

Thursday 27 July 2023

HUAREN's dna nucleoside are useful building blocks for DNA and RNA synthesis because they can alter the stability, function, and utility of an oligo, making them useful for a variety of applications. Our uniquely large collection of nucleosides offers a diversity of properties such...

WUHU HUAREN SCIENCE AND TECHNOLOGY CO., LTD.

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China 401120 Medicina

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Uracil

Friday 30 May 2025

用于医学和生化研究。 品牌: Soarwin CAS 号:66-22-8 EINECS编号:200-621-9 分子式: C4H4N2O2 密度: 1.4421 (粗略估计) 熔点:>300 °C (lit.) 沸点:209.98°C (粗略估计) Ubicación : No. 10-11, Building 4, Zhongyu Duhui First Station, Longxi Street, Yubei District, Chongqing, 401120 Chongqing, Persona a contactar : Shakira Xia...

Chongqing Soarwin Technology Co., Ltd

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  • +15 2 82 60 18 74