Date published: 2026-5-15

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HDHD2 Inhibitors

HDHD2 inhibitors are a class of chemical compounds designed to specifically inhibit the activity of HDHD2, a hydrolase enzyme involved in cellular phosphate metabolism. HDHD2, short for Haloacid Dehalogenase-like Hydrolase Domain-containing 2, functions primarily by catalyzing the hydrolysis of phosphates from specific substrates, thereby playing a critical role in regulating phosphate turnover and maintaining phosphate homeostasis within cells. This enzyme is part of a larger superfamily of hydrolases that are important in various biochemical pathways, particularly those involved in the metabolism of nucleotides, lipids, and carbohydrates. By targeting HDHD2, these inhibitors interfere with its ability to modulate phosphate groups, potentially altering the metabolic pathways in which HDHD2 is involved.

The mechanism of action for HDHD2 inhibitors generally involves binding to the active site of the enzyme, preventing it from interacting with its phosphate-containing substrates. This interference disrupts the enzyme's catalytic cycle, leading to reduced phosphate hydrolysis and subsequent changes in cellular phosphate dynamics. Researchers utilize HDHD2 inhibitors to study the role of phosphate regulation in metabolic pathways and to better understand the enzyme's function in broader biological contexts, such as signal transduction and energy metabolism. Inhibiting HDHD2 offers insights into how phosphate metabolism is intricately connected to cellular energy balance and molecular signaling processes. These inhibitors provide valuable tools for dissecting the biochemical pathways regulated by phosphate turnover and exploring the cellular consequences of altered phosphate metabolism at the molecular level.

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Items 1 to 10 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

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 binds to DNA, inhibiting RNA synthesis. This could reduce the expression of HDHD2 by preventing its transcription.

Cycloheximide

66-81-9sc-3508B
sc-3508
sc-3508A
100 mg
1 g
5 g
$41.00
$84.00
$275.00
127
(6)

Cycloheximide inhibits protein synthesis by blocking translational elongation, potentially reducing HDHD2 protein levels.

Fluorouracil

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

Fluorouracil is incorporated into RNA, disrupting function and affecting protein synthesis, possibly influencing HDHD2 expression.

5-Aza-2′-Deoxycytidine

2353-33-5sc-202424
sc-202424A
sc-202424B
25 mg
100 mg
250 mg
$218.00
$322.00
$426.00
7
(1)

5-Aza-2′-Deoxycytidine may alter the expression of HDHD2 by influencing DNA methylation patterns.

Rapamycin

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

Sirolimus inhibits mTOR, affecting protein synthesis and possibly reducing HDHD2 expression.

MLN8237

1028486-01-2sc-394162
5 mg
$220.00
(0)

Alisertib inhibits Aurora A kinase, affecting cell cycle and potentially influencing HDHD2 expression.

ABT-199

1257044-40-8sc-472284
sc-472284A
sc-472284B
sc-472284C
sc-472284D
1 mg
5 mg
10 mg
100 mg
3 g
$118.00
$337.00
$520.00
$832.00
$1632.00
10
(0)

ABT-199 targets Bcl-2, influencing apoptosis which could indirectly affect HDHD2 expression levels.

Quercetin

117-39-5sc-206089
sc-206089A
sc-206089E
sc-206089C
sc-206089D
sc-206089B
100 mg
500 mg
100 g
250 g
1 kg
25 g
$11.00
$17.00
$110.00
$250.00
$936.00
$50.00
33
(2)

Quercetin might influence HDHD2 expression by modulating various signaling pathways and transcription factors.

Resveratrol

501-36-0sc-200808
sc-200808A
sc-200808B
100 mg
500 mg
5 g
$80.00
$220.00
$460.00
64
(2)

Resveratrol might modulate HDHD2 expression through its action on various signaling pathways and transcriptional regulation.

Genistein

446-72-0sc-3515
sc-3515A
sc-3515B
sc-3515C
sc-3515D
sc-3515E
sc-3515F
100 mg
500 mg
1 g
5 g
10 g
25 g
100 g
$45.00
$164.00
$200.00
$402.00
$575.00
$981.00
$2031.00
46
(1)

Genistein, by modulating kinase activities, could potentially influence the expression of HDHD2.