Literature DB >> 33164987

YIPF5 mutations cause neonatal diabetes and microcephaly: progress for precision medicine and mechanistic understanding.

Toni I Pollin, Simeon I Taylor.   

Abstract

Identifying genes that result in monogenic diabetes can provide insights that can build a scientific foundation for precision medicine. At present, nearly 20% of neonatal diabetes cases have unknown causes. In this issue of the JCI, De Franco and Lytrivi et al. sequenced the genome of two probands with a rare neonatal diabetes subtype that also associated with microcephaly and epilepsy. The authors revealed mutations in the YIPF5 gene. YIPF5 resides in the Golgi apparatus and is thought to play a critical role in vesicular trafficking. Notably, disrupting YIPF5 in β cell-based models induced ER stress signaling and resulted in the accumulation of intracellular proinsulin. We believe that utilizing registries and biobanks to reveal other monogenic atypical forms of diabetes is an important approach to gaining insight and suggest that an insulin sensitizer may alleviate ER stress associated with YIPF5 disruption by decreasing the demand for insulin secretion.

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Year:  2020        PMID: 33164987      PMCID: PMC7685734          DOI: 10.1172/JCI142364

Source DB:  PubMed          Journal:  J Clin Invest        ISSN: 0021-9738            Impact factor:   14.808


  31 in total

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Journal:  Diabetes       Date:  1975-01       Impact factor: 9.461

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Journal:  Diabetes       Date:  2003-02       Impact factor: 9.461

10.  YIPF5 mutations cause neonatal diabetes and microcephaly through endoplasmic reticulum stress.

Authors:  Elisa De Franco; Maria Lytrivi; Hazem Ibrahim; Hossam Montaser; Matthew N Wakeling; Federica Fantuzzi; Kashyap Patel; Céline Demarez; Ying Cai; Mariana Igoillo-Esteve; Cristina Cosentino; Väinö Lithovius; Helena Vihinen; Eija Jokitalo; Thomas W Laver; Matthew B Johnson; Toshiaki Sawatani; Hadis Shakeri; Nathalie Pachera; Belma Haliloglu; Mehmet Nuri Ozbek; Edip Unal; Ruken Yıldırım; Tushar Godbole; Melek Yildiz; Banu Aydin; Angeline Bilheu; Ikuo Suzuki; Sarah E Flanagan; Pierre Vanderhaeghen; Valérie Senée; Cécile Julier; Piero Marchetti; Decio L Eizirik; Sian Ellard; Jonna Saarimäki-Vire; Timo Otonkoski; Miriam Cnop; Andrew T Hattersley
Journal:  J Clin Invest       Date:  2020-12-01       Impact factor: 14.808

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  1 in total

1.  Decidual NK cells kill Zika virus-infected trophoblasts.

Authors:  Sumit Sen Santara; Ângela C Crespo; Sachin Mulik; Cristian Ovies; Selma Boulenouar; Jack L Strominger; Judy Lieberman
Journal:  Proc Natl Acad Sci U S A       Date:  2021-11-23       Impact factor: 12.779

  1 in total

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