1.High-Fat Diet-Fed Kcnq1 Mutant Mice Have Reduced Pancreatic β-Cell Mass via Gene-Environment Interaction
Shun-ichiro ASAHARA ; Hiroyuki INOUE ; Yuka IHARA ; Kyoko TERUYAMA ; Asuka IMAI ; Chisako HARA ; Mizuki HARA ; Masako SEIKE ; Aisha YOKOI ; Nozomi KIDO ; Hirotaka SUZUKI ; Ayumi KANNO ; Yuka INABA ; Hitoshi WATANABE ; Go SHIOI ; Maki KIMURA-KOYANAGI ; Michihiro MATSUMOTO ; Hiroshi INOUE ; Keiichi I. NAKAYAMA ; Wataru OGAWA ; Masato KASUGA ; Yoshiaki KIDO
Diabetes & Metabolism Journal 2026;50(1):77-89
Background:
The potassium voltage-gated channel subfamily Q member 1 (KCNQ1) gene has recently received much attention as a candidate susceptibility gene for type 2 diabetes mellitus, especially in Asian populations. We previously reported that Kcnq1 mutant mice exhibit reduced insulin secretion and hyperglycemia due to a decrease in pancreatic β-cell mass. Through in vivo and in vitro analyses, we ascertained that this mechanism is the result of the downregulation of the non-coding RNA ‘Kcnq1ot1,’ which is expressed in the paternal allele of the Kcnq1 gene region, causing an increase in the expression of the cell cycle inhibitor cyclin dependent kinase inhibitor 1C (Cdkn1c). It was found that decreased Kcnq1ot1 expression resulted in pancreatic β-cell failure; however, the degree of pancreatic β-cell volume reduction was not severe.
Methods:
We induced obesity in Kcnq1ot1 truncation mice by feeding them a high-fat diet and evaluated pancreatic β-cell mass.
Results:
In the present study, we reveal that CCAAT/enhancer binding protein beta (C/EBPβ), which is expressed at higher levels in pancreatic β-cells in obese individuals, further increases the expression of Cdkn1c, which is upregulated by the Kcnq1 gene mutation. We found that simultaneous Cdkn1c hypomethylation and C/EBPβ overexpression in pancreatic β-cells causes a synergistic decrease in pancreatic β-cell mass.
Conclusion
This finding suggests that the synergistic effect of genetic factors such as Kcnq1 gene mutations and environmental factors such as obesity and overeating, which lead to increased expression of C/EBPβ, contribute to the regulation of pancreatic β-cell mass. This study is the first to show that the Kcnq1 gene is related to pancreatic β-cell mass through genetic-environment interactions.
2.Dermatofibrosarcoma Protuberans on the Chest with a Variety of Clinical Features Masquerading as a Keloid: Is the Disease Really Protuberant?.
Kumiko KIMURA ; Toru INADOMI ; Wataru YAMAUCHI ; Yukihiro YOSHIDA ; Tsutomu KASHIMURA ; Tadashi TERUI
Annals of Dermatology 2014;26(5):643-645
No abstract available.
Dermatofibrosarcoma*
;
Keloid*
;
Thorax*
3.Fetal Topographical Anatomy of the Pancreatic Head and Duodenum with Special Reference to Courses of the Pancreaticoduodenal Arteries.
Zhe Wu JIN ; Hee Chul YU ; Baik Hwan CHO ; Hyoung Tae KIM ; Wataru KIMURA ; Mineko FUJIMIYA ; Gen MURAKAMI
Yonsei Medical Journal 2010;51(3):398-406
PURPOSE: The purpose of this study is to provide better understanding as to how the "double" vascular arcades, in contrast to other intestinal marginal vessels, develop along the right margin of the pancreatic head. MATERIALS AND METHODS: In human fetuses between 8-30 weeks, we described the topographical anatomy of the vessels, bile duct, duodenum as well as the ventral and dorsal primordia of the pancreatic head with an aid of pancreatic polypeptide immunohisto-chemistry. RESULTS: The contents of the hepatoduodenal ligament crossed the superior side of the pylorus. Moreover, the right hepatic artery originating from the superior mesenteric artery ran along the superior aspect of the pancreatic head. An arterial arcade, corresponding to the posterior pancreaticoduodenal arteries, encircled the superior part of the pancreatic head, whereas another arcade, corresponding to the anterior pancreaticoduodenal arteries, surrounded the inferior part. The dorsal promordium of the pancreas surrounded and/or mixed the ventral primordium at 13-16 weeks. Thus, both arterial arcades were likely to attach to the dorsal primordium. CONCLUSION: The fetal anatomy of the pancreaticoduodenal vascular arcades as well as that of the hepatoduodenal ligament were quite different from adults in topographical relations. Thus, in the stage later than 30 weeks, further rotation of the duodenum along a horizontal axis seemed to be required to move the pylorus posterosuperiorly and to reflect the superior surface of the pancreatic head posteriorly. However, to change the topographical anatomy of the superior and inferior arterial arcades into the final position, re-arrangement of the pancreatic parenchyma might be necessary in the head.
Arteries/*embryology
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Duodenum/anatomy & histology/*blood supply/*embryology
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Female
;
Fetus/*blood supply
;
Gestational Age
;
Humans
;
Immunohistochemistry
;
Male
;
Pancreas/anatomy & histology/*blood supply/*embryology
;
Pregnancy

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