» Articles » PMID: 30423260

Hyperglycemia Promotes Microvillus Membrane Expression of DMT1 in Intestinal Epithelial Cells in a PKCα-dependent Manner

Overview
Journal FASEB J
Specialties Biology
Physiology
Date 2018 Nov 14
PMID 30423260
Citations 12
Authors
Affiliations
Soon will be listed here.
Abstract

Excessive iron increases the incidence of diabetes and worsens diabetic complications. Reciprocally, diabetes induces iron loading, partially attributable to elevated intestinal iron export according to a recent report. Herein, we show that iron uptake and the mRNA expression of iron importer divalent metal transporter 1 (DMT1) were significantly increased in the duodenum of streptozotocin-induced diabetic mice. Immunofluorescence staining of human intestinal biopsies revealed increased brush border membrane (BBM) and decreased cytoplasmic DMT1 expression in patients with diabetes, suggesting translocation of DMT1. This pattern of DMT1 regulation was corroborated by immunoblotting results in diabetic mice showing that BBM DMT1 expression was increased by 210%, in contrast to a 60% increase in total DMT1. PKC mediates many diabetic complications, and PKCα activity was increased in diabetic mouse intestine. Intriguingly, diabetic mice with PKCα deficiency did not show increases in iron uptake and BBM DMT1 expression. High-glucose treatment increased plasma membrane DMT1 expression via the activation of PKCα in cultured IECs. Inhibition of PKCα potentiated the ubiquitination and degradation of DMT1 protein. We further showed that high glucose suppressed membrane DMT1 internalization. These findings demonstrate that PKCα promotes microvillus membrane DMT1 expression and intestinal iron uptake, contributing to diabetic iron loading.-Zhao, L., Bartnikas, T., Chu, X., Klein, J., Yun, C., Srinivasan, S., He, P. Hyperglycemia promotes microvillus membrane expression of DMT1 in intestinal epithelial cells in a PKCα-dependent manner.

Citing Articles

The Roles of DMT1 in Inflammatory and Degenerative Diseases.

Liu H, Li M, Deng Y, Hou Y, Hou L, Zhang X Mol Neurobiol. 2025; .

PMID: 39775481 DOI: 10.1007/s12035-025-04687-x.


Targeting PKCα alleviates iron overload in diabetes and hemochromatosis through the inhibition of ferroportin.

Banerjee S, Lu S, Jain A, Wang I, Tao H, Srinivasan S Blood. 2024; 144(13):1433-1444.

PMID: 38861671 PMC: 11451300. DOI: 10.1182/blood.2024023829.


Inhibition of protein kinase C-α and activation of ezrin by restore Na/H exchange activity and fluid absorption in mice.

Han Y, Srinivasan S, Yun C Am J Physiol Endocrinol Metab. 2023; 325(3):E214-E226.

PMID: 37467022 PMC: 10511175. DOI: 10.1152/ajpendo.00145.2023.


Drugs activating hypoxia-inducible factors correct erythropoiesis and hepcidin levels via renal EPO induction in mice.

Nakai T, Iwamura Y, Kato K, Hirano I, Matsumoto Y, Tomioka Y Blood Adv. 2023; 7(15):3793-3805.

PMID: 37146271 PMC: 10393763. DOI: 10.1182/bloodadvances.2023009798.


Antioxidant Phytochemicals as Potential Therapy for Diabetic Complications.

Akpoveso O, Ubah E, Obasanmi G Antioxidants (Basel). 2023; 12(1).

PMID: 36670985 PMC: 9855127. DOI: 10.3390/antiox12010123.


References
1.
Zheng X, Jiang T, Wu H, Zhu D, Wang L, Qi R . Hepatic iron stores are increased as assessed by magnetic resonance imaging in a Chinese population with altered glucose homeostasis. Am J Clin Nutr. 2011; 94(4):1012-9. DOI: 10.3945/ajcn.111.015743. View

2.
Fernandez-Real J, McClain D, Manco M . Mechanisms Linking Glucose Homeostasis and Iron Metabolism Toward the Onset and Progression of Type 2 Diabetes. Diabetes Care. 2015; 38(11):2169-76. DOI: 10.2337/dc14-3082. View

3.
Foot N, Dalton H, Shearwin-Whyatt L, Dorstyn L, Tan S, Yang B . Regulation of the divalent metal ion transporter DMT1 and iron homeostasis by a ubiquitin-dependent mechanism involving Ndfips and WWP2. Blood. 2008; 112(10):4268-75. DOI: 10.1182/blood-2008-04-150953. View

4.
Martiny-Baron G, Kazanietz M, Mischak H, Blumberg P, Kochs G, Hug H . Selective inhibition of protein kinase C isozymes by the indolocarbazole Gö 6976. J Biol Chem. 1993; 268(13):9194-7. View

5.
Xue X, Ramakrishnan S, Weisz K, Triner D, Xie L, Attili D . Iron Uptake via DMT1 Integrates Cell Cycle with JAK-STAT3 Signaling to Promote Colorectal Tumorigenesis. Cell Metab. 2016; 24(3):447-461. PMC: 5023486. DOI: 10.1016/j.cmet.2016.07.015. View