Dehydron
Dehydron is a structural motif in proteins that is characterized by an underwrapped hydrogen bond in the protein's backbone. This underwrapping makes the hydrogen bond susceptible to attack by water molecules, hence the term "dehydron". Dehydrons are thought to play a key role in protein-protein interactions and protein-DNA interactions.
Structure and Function[edit | edit source]
A dehydron is a type of hydrogen bond in a protein's backbone that is underwrapped, meaning it is not sufficiently shielded from water molecules. This makes the hydrogen bond more reactive and susceptible to attack by water. Dehydrons are typically found in regions of the protein that are involved in protein-protein interactions or protein-DNA interactions.
Dehydrons are thought to play a key role in the function of proteins. They are often found in regions of the protein that are involved in binding to other proteins or to DNA. The presence of a dehydron in these regions may help to facilitate these interactions by making the hydrogen bond more reactive.
Role in Disease[edit | edit source]
Dehydrons have been implicated in a number of diseases, including cancer and neurodegenerative diseases. In cancer, dehydrons may contribute to the instability of proteins, leading to their misfolding and aggregation. This can result in the formation of tumors. In neurodegenerative diseases, dehydrons may contribute to the misfolding of proteins, leading to the formation of amyloid plaques.
Detection and Analysis[edit | edit source]
Dehydrons can be detected and analyzed using a variety of techniques, including X-ray crystallography, nuclear magnetic resonance spectroscopy (NMR), and computational biology methods. These techniques can provide detailed information about the structure and function of dehydrons, and can help to identify potential therapeutic targets for diseases associated with dehydrons.
See Also[edit | edit source]
Dehydron Resources | |
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Contributors: Prab R. Tumpati, MD