作者
Intza Garin, Emma L Edghill, Ildem Akerman, Oscar Rubio-Cabezas, Itxaso Rica, Jonathan M Locke, Miguel Angel Maestro, Adnan Alshaikh, Ruveyde Bundak, Gabriel Del Castillo, Asma Deeb, Dorothee Deiss, Juan M Fernandez, Koumudi Godbole, Khalid Hussain, Michele O’Connell, Thomasz Klupa, Stanislava Kolouskova, Fauzia Mohsin, Kusiel Perlman, Zdenek Sumnik, Jose M Rial, Estibaliz Ugarte, Thiruvengadam Vasanthi, Neonatal Diabetes International Group, Karen Johnstone, Sarah E Flanagan, Rosa Martínez, Carlos Castaño, Ann-Marie Patch, Eduardo Fernández-Rebollo, Klemens Raile, Noel Morgan, Lorna W Harries, Luis Castaño, Sian Ellard, Jorge Ferrer, Guiomar Perez de Nanclares, Andrew T Hattersley
发表日期
2010/2/16
期刊
Proceedings of the National Academy of Sciences
卷号
107
期号
7
页码范围
3105-3110
出版商
National Academy of Sciences
简介
Heterozygous coding mutations in the INS gene that encodes preproinsulin were recently shown to be an important cause of permanent neonatal diabetes. These dominantly acting mutations prevent normal folding of proinsulin, which leads to beta-cell death through endoplasmic reticulum stress and apoptosis. We now report 10 different recessive INS mutations in 15 probands with neonatal diabetes. Functional studies showed that recessive mutations resulted in diabetes because of decreased insulin biosynthesis through distinct mechanisms, including gene deletion, lack of the translation initiation signal, and altered mRNA stability because of the disruption of a polyadenylation signal. A subset of recessive mutations caused abnormal INS transcription, including the deletion of the C1 and E1 cis regulatory elements, or three different single base-pair substitutions in a CC dinucleotide sequence located between …
引用总数
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