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Ines Quintela Montse Fernandez‐Prieto Lorena Gomez‐Guerrero Mariela Resches Jesus Eiris Francisco Barros Angel Carracedo 《Clinical Case Reports》2015,3(6):415-423
We report on a male patient with severe autistic disorder, lack of oral language, and dysmorphic features who carries a rare interstitial microdeletion of 4.96 Mb at chromosome 6q14.1‐q15. The patient also harbors a maternally inherited copy number gain of 1.69 Mb at chromosome Xp22.31, whose pathogenicity is under debate. 相似文献
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Andrew M. Zeiger Meghan E. McGarry Angel C. Y. Mak Vivian Medina Sandra Salazar Celeste Eng Amy K. Liu Sam S. Oh Thomas J. Nuckton Deepti Jain Thomas W. Blackwell Hyun Min Kang Goncalo Abecasis Leandra Cordero Oate Max A. Seibold Esteban G. Burchard Jose Rodriguez‐Santana 《Pediatric pulmonology》2020,55(2):533-540
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Marroquí L Batista TM Gonzalez A Vieira E Rafacho A Colleta SJ Taboga SR Boschero AC Nadal A Carneiro EM Quesada I 《Endocrinology》2012,153(4):1663-1672
Chronic malnutrition leads to multiple changes in β-cell function and peripheral insulin actions to adapt glucose homeostasis to these restricted conditions. However, despite glucose homeostasis also depends on glucagon effects, the role of α-cells in malnutrition is largely unknown. Here, we studied α-cell function and hepatic glucagon signaling in mice fed with low-protein (LP) or normal-protein diet for 8 wk after weaning. Using confocal microscopy, we found that inhibition of Ca2? signaling by glucose was impaired in α-cells of LP mice. Consistent with these findings, the ability of glucose to inhibit glucagon release in isolated islets was also diminished in LP mice. This altered secretion was not related with changes in either glucagon gene expression or glucagon content. A morphometric analysis showed that α-cell mass was significantly increased in malnourished animals, aspect that was probably related with their enhanced plasma glucagon levels. When we analyzed the hepatic function, we observed that the phosphorylation of protein kinase A and cAMP response-binding element protein in response to fasting or exogenous glucagon was impaired in LP mice. Additionally, the up-regulated gene expression in response to fasting observed in the hepatic glucagon receptor as well as several key hepatic enzymes, such as peroxisome proliferator-activated receptor γ, glucose-6-phosphatase, and phosphoenolpyruvate carboxykinase, was altered in malnourished animals. Finally, liver glycogen mobilization in response to fasting and the ability of exogenous glucagon to raise plasma glucose levels were lower in LP mice. Therefore, chronic protein malnutrition leads to several alterations in both the α-cell function and hepatic glucagon signaling. 相似文献
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