ISSN 1662-4009 (online)

ey0016.1-4 | New Mechanisms | ESPEYB16

1.4. Estrogen signaling in arcuate Kiss1 neurons suppresses a sex-dependent female circuit promoting dense strong bones

CB Herber , WC Krause , L Wang , JR Bayrer , A Li , M Schmitz , A Fields , B Ford , Z Zhang , MS Reid , DK Nomura , RA Nissenson , SM Correa , HA Ingraham

To read the full abstract: Nat Commun 2019;10:163.Central estrogen signaling via estrogen receptor alpha (ERα) coordinates energy expenditure, reproduction and, in concert with peripheral estrogen, impacts skeletal homeostasis. Here, the authors showed that eliminating ERα in kisspeptin arcuate nucleus neurons resulted in high bone mass phenotype in female mice only.<p clas...

ey0020.3-12 | Translational Highlights | ESPEYB20

3.12. Impaired bone strength and bone microstructure in a novel early-onset osteoporotic rat model with a clinically relevant PLS3 mutation

J Hu , B Zhou , X Lin , Q Zhang , F Guan , L Sun , J Liu , O Wang , Y Jiang , WB Xia , X Xing , M Li

In Brief: The study established a novel rat model with a clinically relevant PLS3 mutation, which replicates the osteoporotic phenotype of early-onset PLS3-related osteoporosis. The findings suggest that treatment with alendronate or teriparatide improves bone mass and microarchitecture, suggesting their potential as effective treatments for early-onset osteoporosis caused by PLS3 mutations.Commentary: This study is an essentia...

ey0019.6-7 | Basic and Genetic Research of DSD | ESPEYB19

6.7. MAP3K1 variant causes hyperactivation of Wnt4/[beta]-catenin/FOXL2 signaling contributing to 46,XY disorders/differences of sex development

H Chen , Q Chen , Y Zhu , K Yuan , H Li , B Zhang , Z Jia , H Zhou , M Fan , Y Qiu , Q Zhuang , Z Lei , M Li , W Huang , L Liang , Q Yan , C Wang

Front Genet. 2022 Mar 3;13:736988. PMID: 35309143, doi: 10.3389/fgene.2022.736988.Brief Summary: This molecular study highlights a novel mechanism of action of Mitogen-activated protein kinase kinase kinase 1 (MAP3K1) in the development of testicular dysgenesis.MAP3K1 is one of the most common genes that has been identified to cause 46, XY DSD and variants are attribu...

ey0015.5-4 | New genes and gene mutations | ESPEYB15

5.4 Mutations That Alter the Carboxy-Terminal-Propeptide Cleavage Site of the Chains of Type I Procollagen Are Associated With a Unique Osteogenesis Imperfecta Phenotype

T Cundy , M Dray , J Delahunt , JD Hald , B Langdahl , C Li , M Szybowska , S Mohammed , EL Duncan , AM McInerney-Leo , PG Wheeler , P Roschger , K Klaushofer , J Rai , M Weis , D Eyre , U Schwarze , PH Byers

To read the full abstract: J Bone Miner Res 2018;33(7):1260-1271Osteogenesis imperfecta (OI) is characterized by early-onset skeletal fragility, often short stature, blue sclerae and some other features. OI is caused by mutations in the two genes encoding type I collagen, namely COL1A1 and COL1A2. Some previous reports have indicated that when the mutation involves the C-propeptide cleavage site in e...

ey0020.8-16 | New Hopes | ESPEYB20

8.16. Engineering the lymph node environment promotes antigen-specific efficacy in type 1 diabetes and islet transplantation

JM Gammon , ST Carey , V Saxena , HB Eppler , SJ Tsai , C Paluskievicz , Y Xiong , L Li , M Ackun-Farmmer , LH Tostanoski , EA Gosselin , AA Yanes , X Zeng , RS Oakes , JS Bromberg , CM Jewell

Brief summary: In this experimental study, immunomodulatory microparticles, consisting of encapsulating self-antigens with rapamycin, were injected into mouse lymph nodes to protect against type 1 diabetes (T1D) and islet graft rejection. Antigens and rapamycin were both required for maximal efficacy and they induced durable tolerance, accompanied by expansion of antigen-specific regulatory T cells (Treg) in both treated and untreated lymph nodes.Antigen...

ey0020.12-1 | Genetics | ESPEYB20

12.1. A draft human pangenome reference

Liao Wen-Wei , Asri Mobin , Ebler Jana , Doerr Daniel , Haukness Marina , Hickey Glenn , Lu Shuangjia , Lucas Julian K , Monlong Jean , Abel…. Haley J , Garrison Erik , Marschall Tobias , Hall Ira M , Li Heng , Paten Benedict

Brief summary: The Human Pangenome Reference Consortium reports a first draft of the human pangenome reference due to replace the existing reference GRCh38 (1, 2). It is an updated, high-quality, graph-based, telomere-to-telomere representation of global genomic diversity including common variants (single-nucleotide variants, structural variants and functional elements).The human reference genome is the fundamental, open-access resource of modern human g...

ey0017.3-9 | New genes | ESPEYB17

3.9. Digenic inheritance of mutations in EPHA2 and SLC26A4 in Pendred syndrome

M Li , SY Nishio , C Naruse , M Riddell , S Sapski , T Katsuno , T Hikita , F Mizapourshafiyi , FM Smith , LT Cooper , MG Lee , M Asano , T Boettger , M Krueger , A Wietelmann , J Graumann , BW Day , AW Boyd , S Offermanns , SI Kitajiri , SI Usami , M Nakayama

To read the full abstract: Nat Commun. 2020;11:1343.Li et al. describe a new genetic mechanism causing Pendred syndrome and extend evidence for an oligogenic origin of congenital hypothyroidism (CH). Autosomal recessive mutations in Pendrin (PDS/SCL26A4 ) were described in 1997 to cause Pendred syndrome [1]. However, over the years patients with either only heterozygous or even no mutation in PDS/SLC26A4 have been diag...

ey0020.8-10 | New Paradigms | ESPEYB20

8.10. Functional and metabolic alterations of gut microbiota in children with new-onset type 1 diabetes

X Yuan , R Wang , B Han , C Sun , R Chen , H Wei , L Chen , H Du , G Li , Y Yang , X Chen , L Cui , Z Xu , J Fu , J Wu , W Gu , Z Chen , X Fang , H Yang , Z Su , J Wu , Q Li , M Zhang , Y Zhou , L Zhang , G Ji , F Luo

Brief summary: Using in-depth multi-omics analyses of human type 1 diabetes (T1D) samples, the authors profiled gut microbial functional and metabolic alterations. The T1D microbiota showed decreased butyrate production and bile acid metabolism and increased lipopolysaccharide (LPS) biosynthesis. Fecal microbiota transplantation in animal models proved that T1D gut microflora is a causative factor in the regulation of glucose metabolism.The etiology of T...