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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 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.
7134 21924 Ensembl ENSG00000114854 ENSMUSG00000091898 UniProt P63316 P19123 RefSeq (mRNA) NM_003280 NM_009393 RefSeq (protein) NP_003271 NP_033419 Location (UCSC) Chr 3: 52.45 – 52.45 Mb Chr 14: 30.93 – 30.93 Mb PubMed search Wikidata View/Edit Human View/Edit Mouse Troponin C, also known as TN-C or TnC, is a protein that resides in the troponin complex on actin thin filaments of striated ...
21925 Ensembl ENSG00000101470 ENSMUSG00000017300 UniProt P02585 P20801 RefSeq (mRNA) NM_003279 NM_009394 RefSeq (protein) NP_003270 NP_033420 Location (UCSC) Chr 20: 45.82 – 45.83 Mb Chr 2: 164.62 – 164.62 Mb PubMed search Wikidata View/Edit Human View/Edit Mouse Troponin C, skeletal muscle is a protein that in humans is encoded by the TNNC2 gene. Troponin (Tn), is a key protein complex in ...
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 ...
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.
The degree of binding depends upon the concentration of calcium ions in the cell. Within an in vivo intact heart, the action/response of the sympathetic nervous system is driven by precisely timed releases of a catecholamine , which is a process that determines the concentration of calcium ions in the cytosol of cardiac muscle cells.
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.