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  2. Osazone - Wikipedia

    en.wikipedia.org/wiki/Osazone

    Sucrose, which is nonreducing, does not form an osazone. A typical reaction showing the formation of an osazone. D-glucose reacts with phenylhydrazine to give glucosazone. The same product is obtained from fructose and mannose. General steps in osazone formation

  3. Sliding filament theory - Wikipedia

    en.wikipedia.org/wiki/Sliding_filament_theory

    Cross-bridge theory states that actin and myosin form a protein complex (classically called actomyosin) by attachment of myosin head on the actin filament, thereby forming a sort of cross-bridge between the two filaments. The sliding filament theory is a widely accepted explanation of the mechanism that underlies muscle contraction. [6]

  4. Myosin - Wikipedia

    en.wikipedia.org/wiki/Myosin

    Kühne had extracted a viscous protein from skeletal muscle that he held responsible for keeping the tension state in muscle. He called this protein myosin. [3] [4] The term has been extended to include a group of similar ATPases found in the cells of both striated muscle tissue and smooth muscle tissue.

  5. Muscle cell - Wikipedia

    en.wikipedia.org/wiki/Muscle_cell

    Myoblasts in skeletal muscle that do not form muscle fibers dedifferentiate back into myosatellite cells. These satellite cells remain adjacent to a skeletal muscle fiber, situated between the sarcolemma and the basement membrane [23] of the endomysium (the connective tissue investment that divides the muscle fascicles into individual fibers ...

  6. Motor protein - Wikipedia

    en.wikipedia.org/wiki/Motor_protein

    Myosins are a superfamily of actin motor proteins that convert chemical energy in the form of ATP to mechanical energy, thus generating force and movement. The first identified myosin, myosin II, is responsible for generating muscle contraction. Myosin II is an elongated protein that is formed from two heavy chains with motor heads and two ...

  7. Protein filament - Wikipedia

    en.wikipedia.org/wiki/Protein_filament

    In biology, a protein filament is a long chain of protein monomers, such as those found in hair, muscle, or in flagella. [1] Protein filaments form together to make the cytoskeleton of the cell. They are often bundled together to provide support, strength, and rigidity to the cell. When the filaments are packed up together, they are able to ...

  8. T-tubule - Wikipedia

    en.wikipedia.org/wiki/T-tubule

    T-tubules (transverse tubules) are extensions of the cell membrane that penetrate into the center of skeletal and cardiac muscle cells.With membranes that contain large concentrations of ion channels, transporters, and pumps, T-tubules permit rapid transmission of the action potential into the cell, and also play an important role in regulating cellular calcium concentration.

  9. Sarcomere - Wikipedia

    en.wikipedia.org/wiki/Sarcomere

    The giant protein titin (connectin) extends from the Z-line of the sarcomere, where it binds to the thick filament (myosin) system, to the M-band, where it is thought to interact with the thick filaments. Titin (and its splice isoforms) is the biggest single highly elasticated protein found in nature.