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The protein composition of neurofilaments varies widely across different animal phyla. Most is known about mammalian neurofilaments. Historically, mammalian neurofilaments were originally thought to be composed of just three proteins called neurofilament protein NF-L (low molecular weight; NF-L), NF-M (medium molecular weight; NF-M) and NF-H (high molecular weight; NF-H).
Certain bacterial species, such as Paraburkholderia elongata, will also filament as a result of a tendency to accumulate phosphate in the form of polyphosphate, which can chelate metal cofactors needed by division proteins. [2] In addition, filamentation is induced by nutrient-rich conditions in the intracellular pathogen Bordetella atropi ...
To generate a new filament, Arp2/3 requires a "mother" filament, monomeric ATP-actin, and an activating domain from Listeria ActA or the VCA region of N-WASP. The Arp2/3 complex binds to the side of the mother filament, forming a Y-shaped branch having a 70-degree angle with respect to the longitudinal axis of the mother filament. Then upon ...
Filament propagation has been observed in several photo-polymerizable systems, including organo-siloxane, [11] acrylics, [12] epoxy and copolymers with epoxies, [13] and polymer blends. [ 14 ] [ 15 ] The locations of filament formation and propagation may be controlled by modulating the spatial profile of the input light field.
Latin fibra, fiber, filament, entrails [2] fibril, fibrin, fibrinous pericarditis, fibroblast, fibrosis fil-fine, hair-like Latin fīlum, thread filament, filum terminale: foramen: hole, opening, or aperture, particularly in bone Latin forāmen: foramen magnum-form: used to form adjectives indicating "having the form of" Latin fōrma, form, shape
The sliding filament theory explains the mechanism of muscle contraction based on muscle proteins that slide past each other to generate movement. [1] According to the sliding filament theory, the myosin ( thick filaments ) of muscle fibers slide past the actin ( thin filaments ) during muscle contraction, while the two groups of filaments ...
Then came experiments to produce ultra-fine fibers of a continuous filament: the most promising experiments were made in Japan in the 1960s, by Miyoshi Okamoto, a scientist at Toray Industries. [2] Okamoto's discoveries and those of Toyohiko Hikota led to many industrial applications, including Ultrasuede , one of the first successful synthetic ...
In molecular biology, an axoneme, also called an axial filament, is the microtubule-based cytoskeletal structure that forms the core of a cilium or flagellum. [ 1 ] [ 2 ] Cilia and flagella are found on many cells , organisms , and microorganisms , to provide motility.
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