All four statements in the table below might describe the same type of secondary structure in a protein. If they do, check the no errors box under the table, and then write the name of the secondary structure all four statements describe. But one of the statements might be inconsistent. That is, three of the statements might correctly describe a certain type of structure, and the fourth might say something wrong about that structure. If this is what you find, check the error box next to the statement that doesn't fit. statement The hydrogen bonds that hold it together go between backbone amide and carbonyl groups on two stretches of the protein chain that lie next to each other. It keeps its shape because of the strong electrostatic attraction between positively and negatively charged amino acid side chains. Within it, several strands of the protein backbone are held parallel to each other, like pencils in a box. There can be several copies of this in any one protein. No errors. Name of secondary structure described: error? O O
Neutral Amino Acids
Amino acids which do not have any charge on them are neutral amino acids.
Globular Protein
The globular proteins refer to the shape of protein specifically spherical in nature apart from spherical form fibrous, disordered and membrane-bound proteins exist. These globular proteins are miscible in water and form a colloidal solution rather than other types which might not exhibit solubility. Many classes of the fold are found in globular proteins, which render them a sphere shape. Globular fold containing proteins usually are referred to by the term globin.
Dimer
Dimers are basic organic compounds, which are derivates of oligomers. It is formed by the combination of two monomers which could potentially be strong or weak and in most cases covalent or intermolecular in nature. Identical monomers are called homodimer, the non-identical dimers are called heterodimer. The method by which dimers are formed is known as “dimerization”.
Dipeptide
A dipeptide is considered a mixture of two distinct amino acids. Since the amino acids are distinct, based on their composition, two dipeptide's isomers can be produced. Various dipeptides are biologically essential and are therefore crucial to industry.
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