Summary: Hepatocyte nuclear factor 1β (HNF1B) gene is located on chromosome 17q12. It is a transcription factor implicated in the early embryonic development of multiple organs. HNF1B-associated disease is a multi-system disorder with variable clinical phenotypes. There are increasing reports suggesting that the 17q12 deletion syndrome should be suspected in patients with maturity-onset diabetes of the young type 5 (MODY5) due to the deletion of HNF1B gene. In contrast to classical 17q12 syndrome in childhood with neurological disorders and autism, patients with HNF1B-MODY deletion rarely had neuropsychological disorders or learning disabilities. The diagnosis of 17q12 deletion syndrome highlighted the phenotypic heterogeneity of HNF1B-MODY patients. In this study, we report the clinical course of a Thai woman with young-onset diabetes mellitus and hypertriglyceridemia as a predominant feature due to HNF1B deletion as part of the 17q12 deletion syndrome. Our findings and others suggest that hypertriglyceridemia should be considered a syndromic feature of HNF1B-MODY. Our case also highlights the need to use sequencing with dosage analyses to detect point mutations and copy number variations to avoid missing a whole deletion of HNF1B.
Learning Points: Maturity-onset diabetes of the young type 5 (MODY5) may be caused by heterozygous point mutations or whole gene deletion of HNF1B. Recent studies revealed that complete deletion of the HNF1B gene may be part of the 17q12 deletion syndrome with multi-system involvement. The length of the deletion can contribute to the phenotypic variability in patients with HNF1B-MODY due to whole gene deletion. Using next-generation sequencing alone to diagnose MODY could miss a whole gene deletion or copy number variations. Specialized detection methods such as microarray analysis or low-pass whole genome sequencing are required to accurately diagnose HNF1B-MODY as a component of the 17q12 deletion syndrome. Molecular diagnosis is necessary to distinguish other acquired cystic kidney diseases in patients with type 2 diabetes which could phenocopy HNF1B-MODY. Hypertriglyceridemia is a possible metabolic feature in patients with HNF1B-MODY due to 17q12 deletion syndrome.
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http://dx.doi.org/10.1530/EDM-22-0297 | DOI Listing |
ESMO Open
January 2025
Center for Functional Cancer Epigenetics, Dana-Farber Cancer Institute, Boston, USA; Department of Medical Oncology, Dana-Farber Cancer Institute and Harvard Medical School, Boston, USA; Susan F. Smith Center for Women's Cancers, Dana-Farber Cancer Institute, Boston, USA. Electronic address:
Background: The approval of trastuzumab deruxtecan has prompted the subgrouping of human epidermal growth factor receptor 2-negative (HER2-) breast cancers (BCs) to HER2 0 and HER2 low on the basis of immunohistochemistry, although the biological significance of these subgroups remains uncertain. This study is aimed to better understand the molecular and genetic differences among HER2- tumors stratified by quantitative levels of HER2.
Patients And Methods: We analyzed the transcriptomic and genomic data from the Molecular Taxonomy of BC International Consortium (discovery cohort) and The Cancer Genome Atlas (independent validation cohort).
Biomolecules
December 2024
Institute for Maternal and Child Health, IRCCS "Burlo Garofolo", 34137 Trieste, Italy.
Glycosylphosphatidylinositol (GPI) biosynthesis defect 11 (GPIBD11), part of the heterogeneous group of congenital disorders of glycosylation, is caused by biallelic pathogenic variants in . This rare disorder has previously been described in only 12 patients. We report four novel patients: two sib fetuses with congenital anomalies affecting several organs, including the heart; a living girl with tetralogy of Fallot, global developmental delay, behavioral abnormalities, and atypic electroencephalography (EEG) without epilepsy; a girl with early-onset, treatment-resistant seizures, developmental regression, and recurrent infections, that ultimately passed away prematurely due to pneumonia.
View Article and Find Full Text PDFBMJ Case Rep
November 2024
Department of Pediatrics, All India Institute of Medical Sciences (AIIMS), Mangalagiri, Andhra Pradesh, India
Arch Gynecol Obstet
December 2024
Department of Community Center, Longgang District People's Hospital of Shenzhen City (The Second Affiliated Hospital of The Chinese University of Hong Kong, Shenzhen), Shenzhen, Guangdong, China.
J Pediatr Endocrinol Metab
November 2024
Department of Molecular Genetics, Madras Diabetes Research Foundation, ICMR Centre for Advanced Research on Diabetes, Chennai, India.
Objectives: To study the clinical and genotypic spectrum of patients with deletions (MODY 5) at a tertiary care hospital.
Methods: This study included four patients from the Department of Endocrinology at Sher-i-Kashmir Institute of Medical Sciences Srinagar with a strong clinical suspicion of MODY 5. Genetic analysis, including a monogenic gene panel comprising 78 genes associated with MODY and other similar forms of monogenic diabetes, was done.
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