In proteins, the alpha helix predominantly twists in a right-handed direction.
Enzymes can be classified as either simple enzymes or complex enzymes. 1) Simple enzymes are predominantly made up of proteins. 2) Complex enzymes are enzymes that require cofactors like iron or zinc ions to function properly.
The process by which genetic information is transcribed from the 5' to the 3' direction in DNA is called transcription. During transcription, an enzyme called RNA polymerase reads the DNA template strand from the 3' to 5' direction and synthesizes a complementary RNA strand in the 5' to 3' direction. This RNA molecule carries the genetic information needed to make proteins.
Channel proteins belong to the classification of transmembrane proteins known as integral membrane proteins.
Receptor proteins are typically membrane proteins, meaning they are located on the cell membrane.
they work as a catalysator for the transportation. They lower the nessesary energy for a transport to start. This can in many cases only be achieved by highly specifically adapted carriers, which in cells is mostly proteins.
proteins
Ribosomes make proteins using directions from the head office (DNA).
Because the stimulation can onyl go in one direction.
Enzymes can be classified as either simple enzymes or complex enzymes. 1) Simple enzymes are predominantly made up of proteins. 2) Complex enzymes are enzymes that require cofactors like iron or zinc ions to function properly.
Venom can contain a variety of compounds, but most snake venom is predominantly acidic due to the presence of enzymes and proteins that can break down tissues.
There are a great many organic molecules in a cell.The cell membranes are predominantly made up of phospholipids and proteins. There are also large amounts of carbohydrates present, more proteins as well as ribonucelic acid and deoxyribonucelic acid.
in one direction because one ribosome cant go one way and another the other way or our proteins would be messed up
Sulfur is predominantly found in the amino acids cysteine and methionine, which are essential building blocks for proteins in your body. It is also present in various enzymes and other molecules that play important roles in metabolism and cellular function.
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Yes predominantly casein. If you ever see curdled milk, the chunks are the protein. There is a lot of protein. If you want to test this take some milk and pour something acidic into it. It will curdle. Sieve out the solid and see how much liquid is left. Milk contains about 3% protein.
Zinc is transported in the body primarily through binding to proteins, with metallothionein and albumin being key carriers. In the bloodstream, zinc is predominantly found in a free form or complexed with these proteins, facilitating its delivery to tissues. Cellular uptake of zinc occurs via specific transporters, such as ZIP (Zinc Transporter Proteins) and ZnT (Zinc Transporter Proteins), which regulate its entry and exit from cells. Proper transport and homeostasis are crucial for numerous biological functions, including enzyme activity and immune response.
Motor proteins are responsible for the movement of muscle fibers in all three types of muscle tissue - skeletal, cardiac, and smooth muscles. These motor proteins interact with actin and myosin filaments to generate force and cause muscle contraction. In skeletal muscle, these motor proteins are predominantly myosin, while in cardiac and smooth muscles, they mainly consist of myosin and actin as well.