The Prime Example: is the MTOC; also known as "The Microtubule Organizing Centers". First runner-up is "The Cytoskeleton".
In essence, a protein filament is a long strand (aka filament) that's made of protein (hence, "protein filament"). So they are composed of smaller, protein subunits, which are single protein molecules.
Myosin is a protein that is not found in the thin filament. Myosin is a motor protein that is primarily found in the thick filament of muscle cells and is responsible for muscle contraction. The thin filament contains proteins such as actin, tropomyosin, and troponin.
The filament in a bacterial flagellum is made of a protein called flagellin. Flagellin forms the helical structure of the flagellum filament, providing the bacterium with motility.
A protein filament is a long chain of protein subunits, like those found in hair, muscle. They are always bundled together for strength and rigidity.
mysin
A protein filament is a long, thin fiber-like structure composed of protein molecules that are arranged in a specific pattern. These filaments play a critical role in various cellular functions such as cell shape, movement, and signaling. Examples include actin and microtubules, which are essential components of the cytoskeleton.
An Interior Protein Network is when it anchors proteins to specific sites and determines the shape of the cell.
Actin
The network of tiny rods and filaments that form a framework for the cell is known as a cytoskeleton.
A network of filaments is commonly referred to as a "filamentous network" or simply a "filament network." In biological contexts, such networks can describe structures like the cytoskeleton in cells, which provides shape and support. In other fields, such as materials science or astronomy, filament networks can refer to interconnected threads or structures that play critical roles in the properties and behaviors of the systems involved.
A high surface area for gas exchange.
The bacterial flagellum is primarily composed of a filament, hook, and basal body. The filament is made up of protein subunits called flagellin, which form the helical structure. The hook acts as a flexible joint between the filament and the basal body, which anchors the flagellum to the cell membrane and provides the rotary motor for movement.