2018
DOI: 10.1007/s10735-017-9753-0
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SLC30A family expression in the pancreatic islets of humans and mice: cellular localization in the β-cells

Abstract: Zinc is a vital co-factor for insulin metabolism in the pancreatic β-cell, involved in synthesis, maturation, and crystallization. Two families of zinc transporters, namely SLC30A (ZNT) and SLC39A (ZIP) are involved in maintaining cellular zinc homeostasis in mammalian cells. Single nuclear polymorphisms or mutations in zinc transporters have been associated with insulin resistance and risk of type 2 diabetes (T2D) in both humans and mice. Thus, mice can be useful for studying the underlying mechanisms of zinc… Show more

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Cited by 15 publications
(9 citation statements)
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“…The gene SLC30A1 encodes a zinc transporter protein, which is involved in maintaining cellular zinc homeostasis in mammalian cells. This gene is therefore relevant to diabetes, since zinc is an essential co-factor for insulin metabolism in the pancreatic β-cell [ 56 ]. Moving on to the tissue expression of the genes, RD3 has the highest median expression in the pituitary and SLC30AL has the highest median expression in the liver; both organs are directly relevant to diabetes pathogenesis and etiology.…”
Section: Resultsmentioning
confidence: 99%
“…The gene SLC30A1 encodes a zinc transporter protein, which is involved in maintaining cellular zinc homeostasis in mammalian cells. This gene is therefore relevant to diabetes, since zinc is an essential co-factor for insulin metabolism in the pancreatic β-cell [ 56 ]. Moving on to the tissue expression of the genes, RD3 has the highest median expression in the pituitary and SLC30AL has the highest median expression in the liver; both organs are directly relevant to diabetes pathogenesis and etiology.…”
Section: Resultsmentioning
confidence: 99%
“…Increasing evidence suggests that changes in the activity of specific Zn transporters might play a role in regulating the general Zn homeostasis (Cai et al 2018 ). Notably, zinc transporters are crucial for the MTF1-mediated metal response (Grzywacz et al 2015 ; Muraina et al 2020 ).…”
Section: Discussionmentioning
confidence: 99%
“…However, the molecular mechanisms of Cd 2+ transport into b-cells are largely unknown. DMT1 (Lortz, Schroter et al 2014), ZnT (Kambe, Narita et al 2002, Chimienti, Favier et al 2005, Cai, Kirschke et al 2018) and ZIP (Lawson, Maret et al 2017) are metal transport proteins that are abundantly expressed in pancreatic b-cells. A known iron transporter, DMT1 has been reported to also effectively transport several other divalent metals such as Fe 2+ , Mn 2+ , Ni 2+ , Co 2+ and Cd 2+ (Tallkvist, Bowlus et al 2001, Arredondo, Munoz et al 2003, Garrick, Dolan et al 2003.…”
Section: Discussionmentioning
confidence: 99%