ISSN 1662-4009 (online)

ey0018.4-11 | New Perspectives | ESPEYB18

4.11. Genetic architecture associated with familial short stature

Lin Y , Cheng C , Wang C , Liang W , Tang C , Tsai L , Chen C , Wu J , Hsieh A , Lee M , Lin T , Liao C , Huang S , Zhang Y , Tsai C , Tsai F

J Clin Endocrinol Metab. 2020 Jun 1;105(6):dgaa131. doi: 10.1210/clinem/dgaa131. PMID: 32170311Genetic control of height has been widely explored using genome-wide association studies (GWAS) in multi-ethnic populations (1-4). Although familial short stature (FSS) is the most common type of short stature, its genetic profile and impact on bone metabolism remains to be investigated. This GWAS...

ey0018.4-12 | New Perspectives | ESPEYB18

4.12. DNA methylation profiling and genomic analysis in 20 children with short stature who were born small for gestational age

S Peeters , K Declerck , M Thomas , E Boudin , D Beckers , O Chivu , C Heinrichs , K Devriendt , F de Zegher , Hul Van , Vanden Wim , V Berghe , J De Schepper , R Rooman , G Mortier

J Clin Endocrinol Metab. 2020;105(2):dgaa465. doi: 10.1210/clinem/dgaa465. PMID: 32685970This study aimed to identify potential (epi)genetic causes of short stature in 20 SGA children (13 boys; 7 girls) treated with rhGH. Exome sequencing, single-nucleotide polymorphism (SNP) array (both performed in the whole cohort) and genome-wide methylation analysis (performed in a random subset of 10 ...

ey0018.5-11 | Translational highlights | ESPEYB18

5.11. Crtap and p3h1 knock out zebrafish support defective collagen chaperoning as the cause of their osteogenesis imperfecta phenotype

Tonelli F , Cotti S , Leoni L , Besio R , Gioia R , Marchese L , Giorgetti S , Villani S , Gistelinck C , Wagener R , Kobbe B , Fiedler I A K , Larionova D , Busse B , Eyre D , Rossi A , Witten P E , Forlino A

Matrix Biol. 2020 Aug;90:40–60 Abstract: https://pubmed.ncbi.nlm.nih.gov/32173581/In brief: Mutations in 3-hydroxylation complex genes CRTAP and P3H1 cause osteogenesis imperfecta type VII and VIII, respectively. However, the pathogenic mechanism by which these mutations cause disease remains unclear. This study points to a defective chaperone role of the 3-h...

ey0018.8-1 | Mechanism of the year: neuropeptide substance P regulates aldosterone secretion | ESPEYB18

8.1. The neuropeptide substance P regulates aldosterone secretion in human adrenals

J Wils , C Duparc , AF Cailleux , AG Lopez , C Guiheneuf , I Boutelet , HG Boyer , C Dubessy , S Cherifi , B Cauliez , F Gobet , G Defortescu , JF Menard , E Louiset , H Lefebvre

Nat Commun. 2020;11(1): 2673.https://pubmed.ncbi.nlm.nih.gov/32471973/The authors conducted an experimental study in male human volunteers to examine the effects of a neurokinin type 1 receptor (NK1R) antagonist on aldosterone secretion. The findings show the presence of Substance P (SP)-positive nerve fibres in the human adrenal cortex in the vicinity of aldosterone-producing cells and wit...

ey0018.8-9 | Clinical Trials – New Treatments | ESPEYB18

8.9. Efficacy and safety of osilodrostat in patients with Cushing's disease (LINC 3): a multicentre phase III study with a double-blind, randomised withdrawal phase

R Pivonello , M Fleseriu , J Newell-Price , X Bertagna , J Findling , A Shimatsu , F Gu , R Auchus , R Leelawattana , EJ Lee , JH Kim , A Lacroix , A Laplanche , P O'Connell , L Tauchmanova , AM Pedroncelli , BMK Biller

Lancet Diabetes Endocrinol. 2020; 8(9): 748–761.https://pubmed.ncbi.nlm.nih.gov/32730798/The authors report the outcomes from the pivotal phase 3 trial in patients with Cushing’s disease of osilodrostat (a potent oral inhibitor of cytochrome P450 11B1, [mitochondrial 11β-hydroxylase]). Twice-daily osilodrostat rapidly reduced mean 24-h urine free cortisol (UFC) and sustained ...

ey0018.9-13 | Cardiometabolic risk in chronic disease | ESPEYB18

9.13. Biomarkers of cardiometabolic complications in survivors of childhood acute lymphoblastic leukemia

S Morel , P Leveille , M Samoilenko , A Franco , J England , N Malaquin , V Tu , GB Cardin , S Drouin , F Rodier , S Lippe , M Krajinovic , C Laverdiere , D Sinnett , G Lefebvre , E Levy , V Marcil

Sci Rep. 2020 Dec 9; 10: 21507. https://pubmed.ncbi.nlm.nih.gov/33299020/This cross-sectional study of 246 childhood acute lymphoblastic leukemia (cALL) survivors aimed to analyze the relationships between various blood biomarkers and cardiovascular risk, and to test the link between endotoxemia and cardiometabolic complications. A high leptin-adiponectin ratio was associated with obesity, ...

ey0018.10-6 | (1) | ESPEYB18

10.6. Yield of a public health screening of children for islet autoantibodies in Bavaria, Germany

A Ziegler , K Kick , E Bonifacio , F Haupt , M Hippich , D Dunstheimer , M Lang , O Laub , K Warncke , K Lange , R Assfalg , M Jolink , C Winkler , P Achenbach , Fr1da Study Group

JAMA. 2020;323(4):339–351. doi: 10.1001/jama.2019.21565This study aimed to determine the prevalence of pre-symptomatic T1D in young children participating in a public health screening program for islet autoantibodies and the risk for progression to clinical T1D in children carrying multiple autoantibodies. On screening, 0.03% were found to have clinical T1D. Of the 0.31% who were foun...

ey0018.11-2 | New hope: Increased diagnostic yield for disease causing MC4R variants and pharmacological treatment options | ESPEYB18

11.2. Structure reveals the activation mechanism of the MC4 receptor to initiate satiation signalling

H Israeli , O Degtjarik , F Fierro , V Chunilal , AK Gill , NJ Roth , J Botta , V Prabahar , Y Peleg , LF Chan , D Ben-Zvi , PJ McCormick , Y Niv , M Shalev-Benami

Science 2021;372(6544): 808–814 doi: https://doi.org/10.1126/science.abf7958Isreali et al. describe the molecular structure of the melanocortin 4 receptor (MC4R) complexed with its effector G protein (Gs alpha) and setmelanotide, a pharmacological agonist of MC4R.MC4R is a known key element in body weight regulation, connecting response to leptin with inhibition o...

ey0019.1-1 | Basic Science and Stem Cells | ESPEYB19

1.1. Deciphering the spatial-temporal transcriptional landscape of human hypothalamus development

X Zhou , Y Lu , F Zhao , J Dong , W Ma , S Zhong , M Wang , B Wang , Y Zhao , Y Shi , Q Ma , T Lu , J Zhang , X Wang , Q Wu

Cell Stem Cell. 2022 Feb 3;29(2):328-343.e5. doi: 10.1016/j.stem.2021.11.009. PMID: 34879244.Brief Summary: By applying single-cell RNA sequencing (scRNA-seq) to 112,376 cells of human hypothalamus ranging from 7–20 gestational weeks (GW7–20), the authors produced a spatiotemporal transcriptome atlas of human hypothalamus development and revealed critical regulatory genes control...

ey0019.2-5 | Neonatal hypoglycaemia | ESPEYB19

2.5. PNC2 (SLC25A36) deficiency associated with the hyperinsulinism/hyperammonemia syndrome

MA Shahrour , FM Lasorsa , V Porcelli , I Dweikat , MA Di Noia , M Gur , G Agostino , A Shaag , T Rinaldi , G Gasparre , F Guerra , A Castegna , S Todisco , B Abu-Libdeh , O Elpeleg , L Palmieri

J Clin Endocrinol Metab. 2021 19;107(5):1346-1356. doi: 10.1210/clinem/dgab932. PMID: 34971397.Brief Summary: This is a case report of a potentially new genetic disorder that causes hyperinsulinaemic hypoglycemia, protein sensitivity and high serum ammonia level (Hyperinsulinism/hyperammonemia syndrome (HI/HA) syndrome). Mutations in the solute the carrier family 25, member 36 (SLC25A36) may b...