Date published: 2026-5-16

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ZNF605 Activators

Chemical activators of ZNF605 include a variety of metal ions that can interact with the zinc finger domains inherent to the structure of ZNF605. Zinc Chloride provides zinc ions that stabilize the zinc finger domains, which are essential for the protein's binding to DNA and subsequent activation. Similarly, Magnesium Chloride supplies magnesium ions that enhance the structural stability of ZNF605, ensuring it maintains the proper conformation necessary for activation. Cobalt(II) Chloride and Nickel(II) Sulfate both contribute cobalt and nickel ions, respectively, which bind to the zinc finger motifs and can alter the protein's structure to a more active conformation that promotes DNA binding. Cadmium Chloride introduces cadmium ions that induce a structural conformation in ZNF605 conducive to activation and engagement with DNA.

Additionally, Copper(II) Sulfate and Mercury(II) Chloride serve as sources of copper and mercury ions, which can induce structural changes in ZNF605, activating its DNA-binding activity. Silver Nitrate provides silver ions that interact with the protein's zinc finger domains, leading to an activated state that augments its DNA-binding activity. Potassium Dichromate can influence the cellular redox state, which in turn can affect metal-binding properties of ZNF605, promoting its activation. Sodium Selenite supports antioxidant pathways that stabilize ZNF605's structure, aiding in its activation for DNA interaction. Ferric Chloride provides iron ions that can facilitate the DNA-binding conformation of ZNF605, leading to the protein's functional activation. Lastly, Bismuth(III) Nitrate delivers bismuth ions that can enhance ZNF605's activation by promoting a conformation that supports improved DNA-binding functionality. Each of these chemicals, by providing specific metal ions or influencing cellular conditions, can directly contribute to the active conformation and function of ZNF605.

SEE ALSO...

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Zinc

7440-66-6sc-213177
100 g
$48.00
(0)

Zinc ions from Zinc Chloride can bind and stabilize the zinc finger domains of ZNF605, which are crucial for DNA binding and protein activation.

Magnesium chloride

7786-30-3sc-255260C
sc-255260B
sc-255260
sc-255260A
10 g
25 g
100 g
500 g
$28.00
$35.00
$48.00
$125.00
2
(1)

Magnesium ions from Magnesium Chloride can enhance the structural stability of ZNF605, ensuring proper conformation for its activation and interaction with DNA.

Cobalt(II) chloride

7646-79-9sc-252623
sc-252623A
5 g
100 g
$64.00
$176.00
7
(1)

Cobalt ions specifically bind to the zinc finger motifs of ZNF605, altering its structure to a conformation that promotes activation and DNA binding.

Nickel Sulfate

7786-81-4sc-507407
5 g
$63.00
(0)

Nickel ions interact with the zinc finger domains of ZNF605, potentially modifying its DNA interaction dynamics leading to protein activation.

Cadmium chloride, anhydrous

10108-64-2sc-252533
sc-252533A
sc-252533B
10 g
50 g
500 g
$56.00
$183.00
$352.00
1
(1)

Cadmium ions can induce a structural conformation in ZNF605 that is required for its activation and subsequent DNA binding function.

Copper(II) sulfate

7758-98-7sc-211133
sc-211133A
sc-211133B
100 g
500 g
1 kg
$46.00
$122.00
$189.00
3
(1)

Copper ions can bind to the ZNF605 protein and induce a structural change that activates its DNA-binding activity.

Silver nitrate

7761-88-8sc-203378
sc-203378A
sc-203378B
25 g
100 g
500 g
$114.00
$378.00
$1081.00
1
(1)

Silver ions can interact with the zinc finger domains of ZNF605, leading to an activated state that enhances its DNA-binding activity.

Sodium selenite

10102-18-8sc-253595
sc-253595B
sc-253595C
sc-253595A
5 g
500 g
1 kg
100 g
$49.00
$183.00
$316.00
$98.00
3
(2)

Sodium Selenite enhances antioxidant pathways which can stabilize the zinc finger domains of ZNF605, supporting its activation for DNA binding.

Iron(III) chloride

7705-08-0sc-215192
sc-215192A
sc-215192B
10 g
100 g
500 g
$41.00
$46.00
$87.00
(1)

Iron ions from Ferric Chloride can facilitate the DNA-binding conformation in ZNF605, leading to the activation of the protein.