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Troponin T (blue) anchors the complex on tropomyosin. Troponin is found in both skeletal muscle and cardiac muscle, but the specific versions of troponin differ between types of muscle. The main difference is that the TnC subunit of troponin in skeletal muscle has four calcium ion-binding sites, whereas in cardiac muscle there are only three.
The calcium sensitizer, levosimendan, is purported to bind to troponin C, but only weak or inconsistent binding has been detected, [57] [58] [59] precluding any structure determination. In contrast, levosimendan inhibits type 3 phosphodiesterase with nanomolar affinity, [ 60 ] so its biological target is controversial.
Troponin C is a protein which is part of the troponin complex. It contains four calcium-binding EF hands , although different isoforms may have fewer than four functional calcium-binding subdomains. It is a component of thin filaments , along with actin and tropomyosin .
Troponin (Tn), is a key protein complex in the regulation of striated muscle contraction, composed of three subunits. The TnI subunit inhibits actomyosin ATPase, the TnT subunit binds tropomyosin and TnC, while the TnC subunit binds calcium and overcomes the inhibitory action of the troponin complex on actin thin filaments.
These calcium ions bind to a protein called troponin, which initiates the process of muscle contraction. [50] Calcium sensitizers function by binding to cardiac troponin C, thereby enhancing the sensitivity of heart muscle cells to naturally occurring calcium ions. [51] This heightened sensitivity fosters a more efficient interaction between ...
Calcium ions then bind to troponin, which is associated with tropomyosin. Binding causes changes in the shape of troponin and subsequently causes the tropomyosin isoform to shift its position on the actin filament.
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Cardiac muscle troponin T (cTnT) is a protein that in humans is encoded by the TNNT2 gene. [5] [6] Cardiac TnT is the tropomyosin-binding subunit of the troponin complex, which is located on the thin filament of striated muscles and regulates muscle contraction in response to alterations in intracellular calcium ion concentration.