Date published: 2026-1-9

1-800-457-3801

SCBT Portrait Logo
Seach Input

Troponin Substrates

Santa Cruz Biotechnology now offers a broad range of Troponin Substrates for use in various applications. Troponin substrates are specialized molecules used predominantly in the field of biochemistry and molecular biology to study the regulation of muscle contraction. These substrates interact specifically with the troponin complex, a critical component of the muscle fiber regulatory system that controls the calcium-mediated interaction between actin and myosin, the fundamental process behind muscle contraction. By employing troponin substrates in experiments, researchers can delve into the intricate mechanisms of muscle physiology, exploring how muscles generate force and respond to different stimuli. This has significant implications for understanding basic muscle function, investigating muscle disorders, and exploring muscle response under various non-medical conditions, such as physical stress or environmental changes. These substrates are also vital in developmental biology, helping to study the role of muscle development in the growth and maintenance of organisms. Moreover, troponin substrates are used in the study of comparative physiology to understand how different organisms adapt their muscular systems to their environments. The ability to specifically and effectively modulate troponin interaction makes these substrates valuable in scientific investigations that require precise control over muscle activity, providing insights into a wide range of biological, environmental, and physiological phenomena. View detailed information on our available Troponin Substrates by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

W-7

61714-27-0sc-201501
sc-201501A
sc-201501B
50 mg
100 mg
1 g
$166.00
$306.00
$1675.00
18
(1)

W-7 is a selective inhibitor of calmodulin, demonstrating unique interactions that modulate calcium-dependent signaling pathways. By binding to calmodulin, it alters the protein's conformation, impacting its ability to activate downstream targets. This compound exhibits distinct kinetics in calcium binding, influencing the dynamics of cellular processes such as muscle contraction and neurotransmitter release. Its specificity allows for nuanced regulation of calcium-mediated activities within various cellular contexts.

1-Oxyl-3-(maleimidomethyl)-2,2,5,5-tetramethyl -1-pyrrolidine

54060-41-2sc-208681
5 mg
$360.00
(0)

1-Oxyl-3-(maleimidomethyl)-2,2,5,5-tetramethyl-1-pyrrolidine is a versatile compound known for its ability to form stable adducts through thiol-maleimide chemistry. This reactivity enables selective labeling of biomolecules, facilitating studies on protein interactions and dynamics. Its unique electron paramagnetic resonance properties allow for real-time monitoring of molecular environments, providing insights into conformational changes and reaction mechanisms in complex biological systems.