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Zinc is an essential cofactor for hundreds of enzymes. Zusätzlich bieten wir Ihnen Solute Carrier Family 39 (Zinc Transporter), Member 10 Antikörper (38) und viele weitere Produktgruppen zu diesem Protein an.
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These results provide experimental evidence for metal response elements functioning as repressor elements, implicating MTF1 (zeige MTF1 Proteine) involvement in the negative regulation of ZIP10.
Downregulation of ZnT1 as well as the overexpression of ZIP10, in responses to the ovarian Zn depletion induced by Cd, play a major role in Cd accumulation and consequently in its reproductive toxicity.
A significant correlation between ZIP10 mRNA expressions with aggressiveness of RCC (zeige XRCC1 Proteine).
Zinc and its transporters, ZIP6 (zeige SLC39A6 Proteine) and ZIP10, are required for the breast cancer cells motility stimulated with high glucose level, such as in diabetes.
Genetic ablation of Zip10 in early B-cell stages resulted in significant reductions in B-cell populations, and the inducible deletion of Zip10 in pro-B cells increased the caspase (zeige CASP3 Proteine) activity in parallel with a decrease in intracellular Zn levels.
Zip10-deficiency in mature B cells attenuated both T-cell-dependent and -independent immune responses in vivo. The Zip10-deficient mature B cells proliferated poorly in response to BCR (zeige BCR Proteine) cross-linking, as a result of dysregulated BCR (zeige BCR Proteine) signaling.
Results reveal a novel repressive role for MTF-1 in the regulation of the Zip10 zinc transporter expression by pausing Pol II transcription.
mice fed low-Zn diet had reduced number of terminal deoxynucleotidyl transferase (zeige DNTT Proteine) dUTP (zeige DUT Proteine) nick end labeling-positive cells compromised seminiferous tubule structure, and reduced Zip10 and Zip6 (zeige SLC39A6 Proteine) abundance (>50%; P < 0.5) compared with control diet
The expression of Slc30a1, Slc39a8 (zeige SLC39A8 Proteine), and Slc39a10 in the erythrocytes of zinc deficient and replete mice is reported.
Zinc is an essential cofactor for hundreds of enzymes. It is involved in protein, nucleic acid, carbohydrate, and lipid metabolism, as well as in the control of gene transcription, growth, development, and differentiation. SLC39A10 belongs to a subfamily of proteins that show structural characteristics of zinc transporters (Taylor and Nicholson, 2003
, solute carrier family 39 (metal ion transporter), member 10
, solute carrier family 39 member 10
, zinc transporter ZIP10
, zrt- and Irt-like protein 10
, solute carrier family 39 (zinc transporter), member 10
, zinc transporter ZIP10-like