Date published: 2025-9-11

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ZnT-1 アクチベーター

The zinc transporter 1 (ZnT-1) encoded by the SLC30A1 gene is responsible for exporting zinc from cells and maintaining cellular zinc homeostasis. Several chemicals have been identified that can modulate its activity, although the direct impact of some remains to be fully clarified. Fundamental to ZnT-1's function, zinc itself serves as a primary substrate, influencing ZnT-1 activation to perform its quint role. Cadmium, owing to its structural similarity to zinc, can simulate ZnT-1-mediated zinc efflux. Furthermore, chelating agents like TPEN and EDTA sequester Zn^2+, potentially stimulating ZnT-1 as a compensatory measure to balance zinc levels.

Chemicals such as dithiothreitol (DTT) and glutathione might influence ZnT-1 activity via modulation of the cellular redox state. Conversely, oxidative stress inducers, such as hydrogen peroxide, activate ZnT-1 as a countermeasure against elevated intracellular zinc.. Compounds like curcumin, known to modulate cellular zinc, and pyrithione, an ionophore elevating cellular zinc, further highlight the diverse chemical interactions that potentially regulate ZnT-1 function.

関連項目

製品名CAS #カタログ #数量価格引用文献レーティング

TPEN

16858-02-9sc-200131
100 mg
$127.00
10
(3)

Zn^2+をキレートすることで、ZnT-1の活性化を促進し、細胞の亜鉛欠乏を補う可能性がある。

Cyclosporin A

59865-13-3sc-3503
sc-3503-CW
sc-3503A
sc-3503B
sc-3503C
sc-3503D
100 mg
100 mg
500 mg
10 g
25 g
100 g
$62.00
$90.00
$299.00
$475.00
$1015.00
$2099.00
69
(5)

未知のメカニズムによってZnT-1活性を増加させることができる。

Glutathione, reduced

70-18-8sc-29094
sc-29094A
10 g
1 kg
$76.00
$2050.00
8
(2)

酸化還元状態を変化させ、ZnT-1の活性に影響を与える還元剤。

Hydrogen Peroxide

7722-84-1sc-203336
sc-203336A
sc-203336B
100 ml
500 ml
3.8 L
$30.00
$60.00
$93.00
27
(1)

ZnT-1活性を刺激して細胞内亜鉛の上昇に対抗できる。

Curcumin

458-37-7sc-200509
sc-200509A
sc-200509B
sc-200509C
sc-200509D
sc-200509F
sc-200509E
1 g
5 g
25 g
100 g
250 g
1 kg
2.5 kg
$36.00
$68.00
$107.00
$214.00
$234.00
$862.00
$1968.00
47
(1)

細胞の亜鉛レベルを調節し、ZnT-1活性を刺激する可能性がある。

Zinc

7440-66-6sc-213177
100 g
$47.00
(0)

ZnT-1の直接の基質であり、ZnT-1の主要な役割である亜鉛輸送を強化することによって、ZnT-1を活性化することができる。