Date published: 2026-2-14

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Fe65L2 Inhibitors

Fe65L2 inhibitors encompass a range of chemical compounds that exert their inhibitory effects through various biochemical pathways, ultimately resulting in the decreased functional activity of Fe65L2. Some inhibitors target kinase activity, blocking ATP binding and preventing phosphorylation processes that are vital for Fe65L2's function. Others specifically disrupt phosphoinositide 3-kinase (PI3K) signaling, leading to the downregulation of the PI3K/Akt pathway, which can indirectly influence the protein-protein interactions Fe65L2 engages in. Further, inhibition of mTOR signaling by certain compounds can impact protein synthesis pathways that are crucial for maintaining the pool of interacting partners for Fe65L2. Similarly, by targeting MEK and subsequently preventing the activation of the MAPK/ERK pathway, the phosphorylation state and function of Fe65L2 can be altered, demonstrating how these inhibitors can modulate cellular signaling cascades to exert their effects on Fe65L2. Additional inhibitors operate by interfering with stress-activated protein kinase signaling, such as the p38 MAPK pathway, which can affect Fe65L2's cellular stress response functions. Inhibitors of the JNK pathway may also shift the phosphorylation status of Fe65L2 or its associated proteins, while Rho-associated kinase (ROCK) inhibitors can alter the actin cytoskeleton, thus impacting the cellular localization and function of Fe65L2. Inhibitors of NUAK kinases, RAF kinase, and p70 S6 kinase are known to influence the signaling events and protein interactions that Fe65L2 may regulate. Moreover, comprehensive inhibition of both mTORC1 and mTORC2 pathways by certain compounds can affect Fe65L2's involvement in processes like cellular growth and metabolism.

Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Staurosporine

62996-74-1sc-3510
sc-3510A
sc-3510B
100 µg
1 mg
5 mg
$82.00
$153.00
$396.00
113
(4)

This kinase inhibitor interferes with ATP binding in various kinases, disrupting signaling cascades that may involve the phosphorylation-dependent functions of Fe65L2.

LY 294002

154447-36-6sc-201426
sc-201426A
5 mg
25 mg
$123.00
$400.00
148
(1)

A potent inhibitor of PI3K, this compound downregulates PI3K/Akt signaling, which could influence Fe65L2's interactions with other proteins that rely on PI3K activity.

Rapamycin

53123-88-9sc-3504
sc-3504A
sc-3504B
1 mg
5 mg
25 mg
$63.00
$158.00
$326.00
233
(4)

This mTOR inhibitor disrupts the mTOR signaling pathway, which is crucial for protein synthesis and could affect the proteins that interact with Fe65L2.

PD 98059

167869-21-8sc-3532
sc-3532A
1 mg
5 mg
$40.00
$92.00
212
(2)

By inhibiting MEK, this compound prevents the activation of the MAPK/ERK pathway, which may alter the phosphorylation state and function of Fe65L2.

SB 203580

152121-47-6sc-3533
sc-3533A
1 mg
5 mg
$90.00
$349.00
284
(5)

As a p38 MAPK inhibitor, it interferes with stress-activated protein kinase signaling, potentially impacting Fe65L2-related cellular responses to stress.

WZ4003

1214265-58-3sc-473979
5 mg
$300.00
(0)

A NUAK family kinase inhibitor that can impede the interaction with the binding partners of Fe65L2, as these kinases could modify its function.

GW 5074

220904-83-6sc-200639
sc-200639A
5 mg
25 mg
$106.00
$417.00
10
(1)

A RAF kinase inhibitor that can disrupt downstream signaling, potentially affecting Fe65L2's role in mediating signal transduction.

SP600125

129-56-6sc-200635
sc-200635A
10 mg
50 mg
$40.00
$150.00
257
(3)

An inhibitor of JNK, it may alter the phosphorylation status of Fe65L2 or its binding partners, thereby changing its functional activity.

U-0126

109511-58-2sc-222395
sc-222395A
1 mg
5 mg
$64.00
$246.00
136
(2)

This MEK inhibitor impedes the MAPK/ERK pathway, possibly affecting Fe65L2's interaction with other proteins regulated by this pathway.

Y-27632, free base

146986-50-7sc-3536
sc-3536A
5 mg
50 mg
$186.00
$707.00
88
(1)

This ROCK inhibitor could modify the actin cytoskeleton, which may impact the cellular localization and function of Fe65L2.