Many chemical reactions can only occur under acidic conditions and others can only occur under basic conditions.
The order of the Amino Acids in the protein chain.
not very well :) all body processes don't really have a wide tolerance of large pH differences, so all biological materials have a limited range that the pH can be.
Amino acids, such as histidine or glycine, can function as biological buffers in cells and tissues. These molecules can act as both weak acids and weak bases, helping to maintain stable pH levels within biological systems.
Animal cells obtain nutrients such as glucose, amino acids, and fatty acids from their environment. These nutrients are used to produce energy through cellular respiration and to build important molecules needed for cell function and growth.
Amino acids are absorbed from the digestive system into the bloodstream and are transported to cells throughout the body. They are carried in the blood by proteins called albumin and specialized transporters. Once inside the cells, amino acids are used to build proteins and other essential molecules.
The order of the bases determines the order of amino acids in a protein.
Yes, it can cause cancer.
The order of the Amino Acids in the protein chain.
A substance that can neutralize small amounts of acids or bases is called a buffer. Buffers help maintain a stable pH by resisting changes in acidity or alkalinity when small amounts of acids or bases are added. Common examples of buffers include bicarbonate in blood and phosphate in cells.
The sequence of bases in a segment of DNA is crucial because it encodes the genetic information that directs the synthesis of proteins, which perform essential functions in cells. Each sequence of bases corresponds to specific amino acids, determining the structure and function of proteins. Additionally, variations in these sequences can affect traits and influence cellular processes, making them vital for growth, development, and response to environmental changes. Thus, the precise arrangement of bases is fundamental to the biology and functionality of living organisms.
Nucleic acids contain genetic information in the form of a sequence of nucleotide bases. They are made up of sugar molecules, phosphate groups, and nitrogenous bases (adenine, thymine, cytosine, and guanine). Two types of nucleic acids are DNA and RNA, which play essential roles in storing and transmitting genetic information in cells.
If your cells do not have enough amino acids, the amino acids from the proteins you eat are shipped to your cells so that your cells can make the proteins they need. If your cells have plenty of amino acids, the amino acids from the proteins you eat are converted into carbohydrates or fats.
not very well :) all body processes don't really have a wide tolerance of large pH differences, so all biological materials have a limited range that the pH can be.
Amino acids, such as histidine or glycine, can function as biological buffers in cells and tissues. These molecules can act as both weak acids and weak bases, helping to maintain stable pH levels within biological systems.
All cells in the body require nutrients such as glucose, amino acids, fatty acids, vitamins, and minerals to function properly. They also need oxygen for energy production and removal of waste products. Proper hydration and a stable internal environment (homeostasis) are also essential for cell survival.
Electrolytes are the solutions of salts, acids and bases and semen has numerous electrolytes. They include both acids and salts.
Proteins are a type of molecule synthesized from amino acids in cells.