Date published: 2026-3-26

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WDR55 Inhibitors

The term WDR55 Inhibitors refers to a class of chemicals that can influence the functionality of the WDR55 protein. WDR55 is a member of the WD repeat domain protein family, which has diverse roles in cell cycle control, signal transduction, and gene transcription. Therefore, WDR55 inhibitors can impact these crucial cellular functions by modulating the protein's activity. Inhibitors can target WDR55 in several ways, which reflect WDR55's involvement in various cellular processes. For instance, some inhibitors can disrupt signal transduction, a fundamental cellular communication process. By interfering with the signaling cascades, these inhibitors can affect WDR55's function if it acts as an intermediate or facilitator in these pathways.

Another way these inhibitors can impact WDR55 is by inhibiting transcription, the process of synthesizing RNA from a DNA template. Given that WDR55 is a protein, it is produced through transcription and translation. Hence, any chemical that inhibits transcription can limit the synthesis of WDR55, consequently affecting its availability and function within the cell. Furthermore, inhibitors could also affect cell cycle processes that WDR55 might be involved in. The cell cycle is a series of events that lead to cell division and duplication. Any disruption in this process can impact the proteins involved, including WDR55. In summary, WDR55 inhibitors are a class of chemicals that can inhibit the WDR55 protein by influencing the cellular processes it is involved in, such as signal transduction, transcription, and the cell cycle. However, it is crucial to note that the inhibitory effects of these chemicals on WDR55 are indirect and depend on the protein's specific role in these processes.

SEE ALSO...

Items 1 to 10 of 11 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)

Staurosporine can inhibit protein kinases involved in signal transduction, and could possibly inhibit WDR55.

Fluorouracil

51-21-8sc-29060
sc-29060A
1 g
5 g
$37.00
$152.00
11
(1)

5-Fluorouracil can inhibit RNA transcription, which could possibly inhibit WDR55 functionality.

Etoposide (VP-16)

33419-42-0sc-3512B
sc-3512
sc-3512A
10 mg
100 mg
500 mg
$51.00
$231.00
$523.00
63
(1)

Etoposide can interfere with DNA transcription, which could possibly affect proteins like WDR55.

LY 294002

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

LY294002 can inhibit phosphatidylinositol 3-kinases (PI3K), part of signal transduction pathways, and could possibly inhibit WDR55.

Actinomycin D

50-76-0sc-200906
sc-200906A
sc-200906B
sc-200906C
sc-200906D
5 mg
25 mg
100 mg
1 g
10 g
$74.00
$243.00
$731.00
$2572.00
$21848.00
53
(3)

Actinomycin D can inhibit RNA synthesis, which could possibly impact the transcription of proteins like WDR55.

Taxol

33069-62-4sc-201439D
sc-201439
sc-201439A
sc-201439E
sc-201439B
sc-201439C
1 mg
5 mg
25 mg
100 mg
250 mg
1 g
$41.00
$74.00
$221.00
$247.00
$738.00
$1220.00
39
(2)

Paclitaxel can stabilize microtubules, affecting cell cycle processes, and could possibly inhibit WDR55.

Vinblastine Sulfate

143-67-9sc-201447
sc-201447A
sc-201447B
sc-201447C
10 mg
50 mg
100 mg
1 g
$109.00
$412.00
$561.00
$2244.00
9
(1)

Vinblastine can destabilize microtubules, affecting cell cycle processes, and could possibly inhibit WDR55.

Selumetinib

606143-52-6sc-364613
sc-364613A
sc-364613B
sc-364613C
sc-364613D
5 mg
10 mg
100 mg
500 mg
1 g
$29.00
$82.00
$420.00
$1897.00
$3021.00
5
(1)

AZD6244 can inhibit MEK1/2, a component of the MAPK signal transduction pathway, and could possibly inhibit WDR55.

Rapamycin

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

Rapamycin can inhibit mTOR, a key protein in signal transduction and cell cycle pathways, and could possibly inhibit WDR55.

Wortmannin

19545-26-7sc-3505
sc-3505A
sc-3505B
1 mg
5 mg
20 mg
$67.00
$223.00
$425.00
97
(3)

Wortmannin can inhibit PI3K, a part of signal transduction pathways, and could possibly inhibit WDR55.