Parvin beta inhibitors are a class of chemical compounds designed to specifically target and inhibit the function of parvin beta, a protein encoded by the PARVB gene. Parvin beta is a member of the parvin family of proteins, which are involved in linking integrins and the actin cytoskeleton. This protein plays a critical role in various cellular processes, including cell adhesion, motility, and survival. Parvin beta is known to interact with integrin-linked kinase (ILK) and other cytoskeletal proteins to form complexes that are essential for the transduction of signals from the extracellular matrix to the interior of the cell. By inhibiting parvin beta, these compounds can disrupt the structural and signaling pathways that depend on its function.
Structurally, parvin beta inhibitors can vary widely, encompassing small molecules, peptides, or larger biomolecules specifically designed to bind to key domains of the parvin beta protein. These inhibitors may interact with the CH (calponin homology) domains of parvin beta, which are crucial for its binding to actin and other signaling molecules. By blocking these interactions, the inhibitors can prevent the formation of functional complexes that are necessary for cell adhesion and migration. The study of parvin beta inhibitors is essential for understanding the role of parvin beta in cytoskeletal dynamics and signal transduction. Research into these inhibitors provides valuable insights into the mechanisms by which parvin beta influences cellular architecture and behavior, highlighting its importance in maintaining the structural integrity and functional responsiveness of cells. Through detailed investigation of parvin beta inhibitors, scientists can explore the broader implications of parvin beta modulation on cellular processes such as migration, adhesion, and cytoskeletal organization.
製品名 | CAS # | カタログ # | 数量 | 価格 | 引用文献 | レーティング |
---|---|---|---|---|---|---|
Cytochalasin D | 22144-77-0 | sc-201442 sc-201442A | 1 mg 5 mg | $145.00 $442.00 | 64 | |
アクチンの重合を阻害し、パーヴィンなどのアクチン結合タンパク質の相互作用や機能に影響を与える可能性がある。 | ||||||
Latrunculin A, Latrunculia magnifica | 76343-93-6 | sc-202691 sc-202691B | 100 µg 500 µg | $260.00 $799.00 | 36 | |
アクチン単量体に結合し、重合を阻害することで、間接的にアクチン細胞骨格に関連するタンパク質に影響を与える。 | ||||||
Jasplakinolide | 102396-24-7 | sc-202191 sc-202191A | 50 µg 100 µg | $180.00 $299.00 | 59 | |
アクチンフィラメントを安定化させ、間接的にアクチン結合タンパク質の相互作用や機能に影響を与える可能性がある。 | ||||||
(±)-Blebbistatin | 674289-55-5 | sc-203532B sc-203532 sc-203532A sc-203532C sc-203532D | 5 mg 10 mg 25 mg 50 mg 100 mg | $179.00 $307.00 $455.00 $924.00 $1689.00 | 7 | |
アクチンフィラメントと相互作用するモータータンパク質であるミオシンIIを阻害し、それによってアクチンの動態と関連タンパク質に影響を与える可能性がある。 | ||||||
Y-27632, free base | 146986-50-7 | sc-3536 sc-3536A | 5 mg 50 mg | $182.00 $693.00 | 88 | |
ROCK阻害剤であり、Rhoキナーゼ媒介経路に影響を与える。この経路はアクチン細胞骨格のリモデリングに重要であり、間接的にparvinタンパク質に影響を与える可能性がある。 | ||||||
CK 666 | 442633-00-3 | sc-361151 sc-361151A | 10 mg 50 mg | $315.00 $1020.00 | 5 | |
Arp2/3複合体阻害剤であり、アクチンの分岐とネットワーク形成に影響を与え、アクチン結合タンパク質の動態を変化させる可能性がある。 | ||||||
Phalloidin | 17466-45-4 | sc-202763 | 1 mg | $229.00 | 33 | |
アクチンフィラメントに結合し安定化させることで、間接的にアクチンとパービンファミリータンパク質の相互作用に影響を与える可能性がある。 |