The class of chemicals known as Extensin inhibitors encompasses a diverse array of compounds that intricately modulate the expression and function of the protein within cellular contexts. Imatinib, a tyrosine kinase inhibitor, disrupts the PDGF signaling pathway by inhibiting the BCR-ABL fusion protein. Extensin, intimately linked to cell wall integrity, can be indirectly modulated by altering PDGF signaling dynamics. Imatinib's impact on PDGF signaling unveils a potential avenue for influencing Extensin levels and function within the context of cell wall regulation. Latrunculin A disrupts actin polymerization, affecting cytoskeletal dynamics. Extensin, crucial for cell wall structure, is influenced indirectly by alterations in actin organization. Latrunculin A's impact on actin dynamics provides insights into potential regulatory nodes governing Extensin expression and function within the intricate network of cellular architecture. Nordihydroguaiaretic Acid inhibits lipoxygenases, disrupting arachidonic acid metabolism. Extensin, intricately involved in cell wall biosynthesis, can be indirectly influenced by alterations in lipid signaling. Nordihydroguaiaretic Acid's impact on lipoxygenase activity unveils a potential avenue for regulating Extensin levels and function within the context of lipid-mediated cellular processes.
Cytochalasin D disrupts actin polymerization, affecting cytoskeletal organization. Extensin, crucial for cell wall structure, is indirectly modulated by alterations in actin dynamics. Cytochalasin D's impact on actin polymerization provides insights into potential regulatory nodes governing Extensin expression and function within the intricate network of cellular architecture. A769662 activates AMPK, a central regulator of cellular energy homeostasis. Extensin, implicated in cell wall biosynthesis, is indirectly influenced by alterations in AMPK signaling dynamics. A769662's impact on AMPK offers a potential avenue for regulating Extensin levels and function within the context of energy-mediated cellular processes. Bisindolylmaleimide I inhibits PKC, a kinase involved in various signaling pathways. Extensin, associated with cell wall integrity, is indirectly modulated by alterations in PKC signaling dynamics. Bisindolylmaleimide I's impact on PKC provides a potential avenue for regulating Extensin levels and function within the intricate network of cellular signaling pathways. In summary, the diverse array of chemicals within the Extensin inhibitors class provides a nuanced understanding of the intricate regulatory mechanisms governing Extensin's expression and function within the complex network of cellular signaling pathways.
| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
Imatinib | 152459-95-5 | sc-267106 sc-267106A sc-267106B | 10 mg 100 mg 1 g | $25.00 $117.00 $209.00 | 27 | |
Imatinib, a tyrosine kinase inhibitor, disrupts the PDGF signaling pathway by inhibiting the BCR-ABL fusion protein. Extensin, linked to cell wall integrity, can be indirectly modulated by altering PDGF signaling dynamics. Imatinib's impact on PDGF signaling offers a potential avenue for influencing Extensin levels and function within the context of cell wall regulation. | ||||||
Latrunculin A, Latrunculia magnifica | 76343-93-6 | sc-202691 sc-202691B | 100 µg 500 µg | $260.00 $799.00 | 36 | |
Latrunculin A disrupts actin polymerization, affecting cytoskeletal dynamics. Extensin, associated with cell wall structure, is influenced indirectly by alterations in actin organization. Latrunculin A's impact on actin dynamics provides insights into potential regulatory nodes governing Extensin expression and function within the intricate network of cellular architecture. | ||||||
NDGA (Nordihydroguaiaretic acid) | 500-38-9 | sc-200487 sc-200487A sc-200487B | 1 g 5 g 25 g | $107.00 $376.00 $2147.00 | 3 | |
Nordihydroguaiaretic Acid inhibits lipoxygenases, disrupting arachidonic acid metabolism. Extensin, involved in cell wall biosynthesis, can be indirectly influenced by alterations in lipid signaling. Nordihydroguaiaretic Acid's impact on lipoxygenase activity unveils a potential avenue for regulating Extensin levels and function within the context of lipid-mediated cellular processes. | ||||||
(±)-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 | |
Blebbistatin inhibits myosin II ATPase, affecting actomyosin contractility. Extensin, linked to cell wall dynamics, is indirectly modulated by alterations in cytoskeletal contractility. Blebbistatin's impact on myosin II ATPase offers insights into potential regulatory nodes governing Extensin expression and function within the intricate network of cellular architecture. | ||||||
Wortmannin | 19545-26-7 | sc-3505 sc-3505A sc-3505B | 1 mg 5 mg 20 mg | $66.00 $219.00 $417.00 | 97 | |
Wortmannin inhibits PI3-kinases, disrupting the PI3K/Akt signaling pathway. Extensin, associated with cell wall integrity, can be indirectly modulated by alterations in PI3K/Akt signaling dynamics. Wortmannin's impact on PI3-kinases offers insights into potential regulatory nodes governing Extensin expression and function within the intricate network of cellular signaling pathways. | ||||||
SB 203580 | 152121-47-6 | sc-3533 sc-3533A | 1 mg 5 mg | $88.00 $342.00 | 284 | |
SB 203580 inhibits p38 MAPK, a kinase involved in stress response signaling. Extensin, implicated in cell wall biosynthesis, is indirectly modulated by alterations in stress signaling dynamics. SB 203580's impact on p38 MAPK offers a potential avenue for regulating Extensin levels and function within the context of stress-mediated cellular processes. | ||||||
GW 5074 | 220904-83-6 | sc-200639 sc-200639A | 5 mg 25 mg | $106.00 $417.00 | 10 | |
GW5074 inhibits Raf-1, a kinase in the MAPK/ERK signaling pathway. Extensin, associated with cell wall integrity, is indirectly influenced by alterations in MAPK/ERK signaling dynamics. GW5074's impact on Raf-1 provides a potential avenue for regulating Extensin levels and function within the context of cell wall regulation. | ||||||
Cytochalasin D | 22144-77-0 | sc-201442 sc-201442A | 1 mg 5 mg | $145.00 $442.00 | 64 | |
Cytochalasin D disrupts actin polymerization, affecting cytoskeletal organization. Extensin, linked to cell wall structure, is indirectly modulated by alterations in actin dynamics. Cytochalasin D's impact on actin polymerization provides insights into potential regulatory nodes governing Extensin expression and function within the intricate network of cellular architecture. | ||||||
A-769662 | 844499-71-4 | sc-203790 sc-203790A sc-203790B sc-203790C sc-203790D | 10 mg 50 mg 100 mg 500 mg 1 g | $180.00 $726.00 $1055.00 $3350.00 $5200.00 | 23 | |
A769662 activates AMPK, a central regulator of cellular energy homeostasis. Extensin, implicated in cell wall biosynthesis, is indirectly influenced by alterations in AMPK signaling dynamics. A769662's impact on AMPK offers a potential avenue for regulating Extensin levels and function within the context of energy-mediated cellular processes. | ||||||
Bisindolylmaleimide I (GF 109203X) | 133052-90-1 | sc-24003A sc-24003 | 1 mg 5 mg | $103.00 $237.00 | 36 | |
Bisindolylmaleimide I inhibits PKC, a kinase involved in various signaling pathways. Extensin, associated with cell wall integrity, is indirectly modulated by alterations in PKC signaling dynamics. Bisindolylmaleimide I's impact on PKC provides a potential avenue for regulating Extensin levels and function within the intricate network of cellular signaling pathways. | ||||||