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Because the amino acids that make up protein molecules come in a variety of shapes and sizes and, therefore, can create protein molecules of different shapes. I believe that's it, at least. It's been a while since I took high school Biology.

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What is the general shape of proteins of pleat?

Proteins generally fold into complex three-dimensional shapes, with a variety of structures such as helices, sheets, and loops. These shapes are essential for their function and can vary greatly depending on the specific sequence of amino acids in the protein.


Proteins are among the most diverse group of Macromolecule because of the?

Proteins are among the most diverse group of macromolecules due to their vast array of amino acid combinations and sequences, which can lead to an almost infinite variety of structures and functions. The unique sequences of 20 different amino acids allow proteins to fold into complex three-dimensional shapes, enabling them to perform a wide range of biological roles such as enzymes, antibodies, and structural components. Additionally, post-translational modifications further enhance their diversity and functionality. This structural complexity underpins their essential roles in virtually all biological processes.


Which characteristics make proteins the most versatile macromolecules in cells in terms of functional capabilities?

Proteins have diverse structures, diverse chemical properties, and flexible shapes.


What part of the cell receives proteins from the ribosomes and modifies and shapes the into functions?

Rough Endoplasmic reticulum (Rough ER)


Are enzymes carbohydrates or lipids or proteins?

The great majority of enzymes are proteins.Proteins are well suited to the job of catalysis, as they can fold into specific three-dimensional shapes that complement the shapes of their substrates.A few enzymes are RNA. For example, the activity of ribosomes depends in part on the catalytic activity of ribosomal RNA (rRNA).

Related Questions

Why is there infinite variety possible in proteins?

Proteins are made up of 20 different amino acids, which can be arranged in numerous ways to form a vast array of protein structures. Additionally, proteins can fold into various shapes and structures due to their flexibility, allowing for diverse functions and interactions with other molecules. This variability in amino acid sequence and protein structure contributes to the infinite variety of proteins that can be produced in living organisms.


What is the general shape of proteins of pleat?

Proteins generally fold into complex three-dimensional shapes, with a variety of structures such as helices, sheets, and loops. These shapes are essential for their function and can vary greatly depending on the specific sequence of amino acids in the protein.


Do eukaryotic cells have the same shape?

No. Almost all plant and animal cells are Eukaryotic, and there are a wide variety of shapes, from the long and slender sperm to a rigid cuboid epithelial cell.


Differences in R-groups give different proteins different what?

shapes


What types of bonds determine the three dimensional shapes of proteins?

peptide


Do asteroids have a variety of sizes shapes and compositions?

yes


What is the size of an organ?

Organs come in a variety of shapes and sizes.


What provides a variety of symbols on PowerPoint 2010?

shapes Gallery


Why is there such a variety of crystal shapes?

because the minerals have a lot of names.


What shape is a kettle?

Manufacturers make kettles in a variety of shapes


Angiosperms called roses comes in a variety of shapes and colors as a result of?

Roses come in a variety of shapes and colors because of cross-pollination or hybridization of roses having different characteristics.


What does a protein's shape determine, considering that proteins vary in shape?

A protein's shape determines its function, as different shapes allow proteins to interact with specific molecules in the body. Proteins with different shapes perform different roles in the body, such as enzymes facilitating chemical reactions or antibodies recognizing and binding to foreign substances.