ISSN 1662-4009 (online)

ey0015.2-11 | FOXP3 mutations lead to early onset diabetes mellitus with no other clinical manifestations | ESPEYB15

FOXP3 mutations can lead to early onset diabetes mellitus with no other clinical manifestations

JL Hwang , SY Park , H Ye , M Sanyoura , AN Pastore , D Carmody , D Del Gaudio , JF Wilson , CL Hanis , X Liu , G Atzmon , B Glaser , LH Philipson , SAW Greeley , Consortium T2D-Genes

To read the full abstract: Pediatr Diabetes. 2018 May;19(3):388-392Mutations in FOXP3 are associated with a severe, early-onset, autoimmunity syndrome known in males known as IPEX (immune dysregulation, polyendocrinopathy, enteropathy, X-linked; OMIM [Online Mendelian Inheritance in Man] 304930). The gene maps to chromosome Xp11.23 and encodes a 431–amino acid protein, also named &#8216...

ey0017.2-11 | Updates on the Genetics of Neonatal Diabetes Mellitus, Congenital Hyperinsulinism and Glucose Disorders | ESPEYB17

2.11. Update of variants identified in the pancreatic [beta]-cell KATPchannel genes KCNJ11 and ABCC8 in individuals with congenital hyperinsulinism and diabetes

E De Franco , C Saint-Martin , K Brusgaard , AE Knight Johnson , L Aguilar-Bryan , P Bowman , JB Arnoux , AR Larsen , S May , Saw Greeley , R Calzada-Leon , B Harman , JAL Houghton , Nishimura-Meguro , TW Laver , S Ellard , D Del Gaudio , HT Christesen , C Bellanne-Chantelot , SE Flanagan

To read the full abstract: Hum Mutat. 2020 May;41(5):884–905. doi: 10.1002/humu.23995. Epub 2020 Feb 17. PMID: 32027066Pancreatic KATPchannels play a key role in regulating insulin secretion. These channels are composed of four subunits of SUR1 and four subunits of KIR6.2 encoded by the ABCC8 and KNCJ11 genes, respectively. Inactivating mutations in these two g...

ey0016.2-2 | Neonatal Hypoglycaemia | ESPEYB16

2.2. Congenital hyperinsulinism as the presenting feature of Kabuki syndrome: clinical and molecular characterization of 9 affected individuals

KL Yap , AEK Johnson , D Fischer , P Kandikatla , J Deml , V Nelakuditi , S Halbach , GS Jeha , LC Burrage , O Bodamer , VC Benavides , AM Lewis , S Ellard , P Shah , D Cody , A Diaz , A Devarajan , L Truong , SAW Greeley , DD De Leon , AC Edmondson , S Das , P Thornton , D Waggoner , D Del Gaudio

To read the full abstract: Genet Med. 2019 Jan;21(1):233–242.This study documented the clinical features and molecular diagnoses of 9 infants with persistent hyperinsulinism and Kabuki syndrome via a combination of sequencing and copy-number profiling methodologies.KS is characterized by typical facial features (long palpebral fissures with eversion of the lat...

ey0016.14-4 | (1) | ESPEYB16

14.4. A reprogramming human T cell function and specificity with non-viral genome targeting

TL Roth , C Puig-Saus , R Yu , E Shifrut , J Carnevale , PJ Li , Hiatt , J Saco , P Krystofinski , H Li , V Tobin , DN Nguyen , MR Lee , AL Putnam , AL Ferris , JW Chen , JN Schickel , L Pellerin , D Carmody , G Alkorta-Aranburu , D Del Gaudio , H Matsumoto , M Morell , Y Mao , M Cho , RM Quadros , CB Gurumurthy , B Smith , M Haugwitz , SH Hughes , JS Weissman , K Schumann , JH Esensten , AP May , A Ashworth , GM Kupfer , SAW Greeley , R Bacchetta , E Meffre , MG Roncarolo , N Romberg , KC Herold , A Ribas , MD Leonetti , A Marson

To read the full abstract: Nature. 2018 Jul;559(7714):405–409This article decries a CRISPR-Cas9 genome-targeting system that does not require viral vectors, allowing rapid and efficient insertion of large DNA sequences at specific sites in the genomes of primary human T cells, while preserving cell viability and function.The common approach to genetically...