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Pentose

158 Sentences | 10 Meanings

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L-Arabinose is a pentose sugar that is used in some types of prebiotic supplements.
Pentose sugars are important components of the polysaccharides that make up plant cell walls.
Fucose is a pentose sugar found in the cell walls of many organisms.
Ribulose is a pentose sugar that plays a key role in photosynthesis.
L-Arabinose is a pentose sugar that is used in the production of biofuels.
D-Arabinose is a pentose sugar that is used in the production of some antibiotics.
Xylose is a common pentose sugar found in many fruits and vegetables.
Xylitol is a sugar alcohol derived from the pentose sugar xylose.
The structure of pentose sugars differs from that of hexose sugars.
Some people are unable to metabolize pentose properly due to a genetic condition.
Some plants store pentose as a form of energy.
Pentose sugars are less sweet than hexose sugars.
Pentose is a type of sugar found in some fruits.
Xylose is a common pentose sugar found in wood and straw.
The pentose sugar deoxyribose is a component of DNA.
Pentose sugars are an important component of the cell wall in certain bacteria.
The enzyme that breaks down pentose sugars is called pentosanase.
Scientists have discovered a new type of pentose in this organism.
Arabinose is a pentose sugar found in many plant gums and mucilages.
The chemical formula of pentose sugars is C5H10O5.
Our bodies break down pentose to produce energy.
The pentose sugar deoxyribose is a key component of DNA, which carries genetic information.
The pentose sugar found in DNA is deoxyribose, while the pentose sugar found in RNA is ribose.
The pentose sugars in DNA and RNA are linked together by phosphodiester bonds, which help to stabilize the structure of the molecule.
The pentose sugar in nucleotides plays a key role in the chemical reactions that occur during DNA replication and transcription.
The pentose sugars in nucleotides are involved in the storage and transmission of genetic information from one generation to the next.
The pentose sugar in RNA is ribose, while the pentose sugar in DNA is deoxyribose.
DNA is made up of four different nucleotides, each containing a different pentose sugar.
The nucleotides in DNA and RNA are linked together by phosphodiester bonds between the pentose sugars and phosphate groups.
The pentose sugars in DNA and RNA are synthesized through a series of enzymatic reactions in the body.
The pentose sugar in RNA is responsible for the formation of the backbone of the molecule, which gives it its characteristic shape.
The sequence of pentose sugars in nucleotides is critical for the function of DNA and RNA, as it determines the sequence of amino acids in proteins.
The five-carbon pentose sugars in nucleic acids are important building blocks for the synthesis of DNA and RNA.
The pentose sugar ribose is a component of RNA, which is involved in protein synthesis.
The structure of DNA consists of a sugar-phosphate backbone made up of alternating pentose sugars and phosphate groups.
The pentose sugars in DNA and RNA are connected to nitrogenous bases such as adenine, cytosine, guanine, and thymine.
The pentose sugar deoxyribose is a component of DNA, which stores genetic information.
The pentose sugars in nucleic acids are involved in the formation of the sugar-phosphate backbone of DNA and RNA.
The order of the nucleotides in DNA and RNA, which is determined by the sequence of pentose sugars, is critical for their function.
The pentose sugar ribose is an important component of RNA, which is responsible for the synthesis of proteins in the body.
The pentose sugar in nucleotides determines the identity of the nucleotide and is essential for the proper functioning of DNA and RNA.
The pentose ring is a common structural feature in many natural products.
The pentose sugar arabinose is commonly used in the production of biofuels.
The structure of pentose molecules is important for understanding genetics.
Pentose carbohydrates are essential for the functioning of the human body.
Pentose sugars are commonly found in DNA and RNA.
The enzymatic breakdown of pentose sugars is a complex process.
The pentose phosphate pathway is a metabolic pathway that generates NADPH and pentoses.
The pentose phosphate pathway is an important metabolic process in cells.
Pentose metabolism is regulated by a number of different enzymes.
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Word Of The Day September 20, 2024
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