Date published: 2026-4-1

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Metallothionein 1F Activators

Metallothionein 1F Activators primarily consist of metal ions that bind to the Metallothionein 1F (MT1F) protein, leading to its functional enhancement. These activators, including Zinc Chloride, Cadmium Chloride, Copper(II) sulfate, Selenium Dioxide, Arsenic Trioxide, Nickel(II) chloride, Lead(II) nitrate, Bismuth(III) nitrate, Silver Nitrate, Mercury(II) chloride, Gold(III) Chloride, and Aluminum chloride, activate MT1F by serving as metal ions for binding. The binding of these ions to MT1F triggers conformational changes, allowing the protein to carry out its functions effectively.

MT1F is primarily involved in metal ion homeostasis and detoxification, and the binding of these metal ions to MT1F plays a central role in these processes. For example, Zinc Chloride, Cadmium Chloride, and Copper(II) sulfate bind to MT1F as metal ions, enhancing its functional activity in zinc, cadmium, and copper homeostasis and detoxification respectively. Similarly, Selenium Dioxide, Arsenic Trioxide, and Nickel(II) chloride bind to MT1F, enhancing its role in selenium, arsenic, and nickel homeostasis and detoxification. Other metal ions, such as Lead(II) nitrate, Bismuth(III) nitrate, Silver Nitrate, Mercury(II) chloride, Gold(III) Chloride, and Aluminum chloride, also interact with MT1F, enhancing its functional activity.

SEE ALSO...

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Zinc

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

Zinc Chloride is a direct activator of Metallothionein 1F (MT1F). Zinc ions bind to the protein, resulting in its functional enhancement. This is particularly vital in metal ion homeostasis and detoxification processes that MT1F is directly involved in.

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 Chloride can stimulate MT1F by binding as a metal ion. The binding of cadmium to MT1F enhances its activity in metal ion homeostasis and detoxification.

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(II) sulfate can activate MT1F by serving as a metal ion for binding. This binding can enhance MT1F's activity, especially in copper homeostasis and detoxification processes.

Selenium

7782-49-2sc-250973
50 g
$62.00
1
(1)

Selenium Dioxide can bind to MT1F and enhance its activity. MT1F can bind selenium ions, playing an essential role in selenium homeostasis and detoxification.

Arsenic(III) oxide

1327-53-3sc-210837
sc-210837A
250 g
1 kg
$89.00
$228.00
(0)

Arsenic Trioxide can activate MT1F by acting as a metal ion for binding. This binding can stimulate MT1F's activity, particularly in arsenic homeostasis and detoxification.

Nickel(II) chloride

7718-54-9sc-236169
sc-236169A
100 g
500 g
$68.00
$188.00
(0)

Nickel(II) chloride can enhance the activity of MT1F by providing a metal ion for binding. This interaction is critical in nickel homeostasis and detoxification processes in which MT1F is directly involved.

Lead (II) nitrate

10099-74-8sc-211724
sc-211724A
100 g
500 g
$40.00
$88.00
(0)

Lead(II) nitrate can stimulate MT1F by providing a metal ion for binding. This binding is critical for lead homeostasis and detoxification processes that MT1F is directly involved in.

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 Nitrate can stimulate MT1F by providing a metal ion for binding. This binding is vital for silver homeostasis and detoxification processes that MT1F is directly involved in.

Gold(III) chloride

13453-07-1sc-250066
250 mg
$56.00
(0)

Gold(III) Chloride can stimulate MT1F by providing a metal ion for binding. This interaction is critical for gold homeostasis and detoxification processes that MT1F is directly involved in.

Aluminum chloride anhydrous

7446-70-0sc-214528
sc-214528B
sc-214528A
250 g
500 g
1 kg
$94.00
$99.00
$136.00
(0)

Aluminum chloride can stimulate MT1F by providing a metal ion for binding. This binding is key for aluminum homeostasis and detoxification processes that MT1F is directly involved in.