We previously reported that a missense mutation at codon 121 (CGG(Arg) to TGG(Trp), R121W) of PAX4 may be associated with the onset of type 2 diabetes in Japanese. In this study, we determined the frequency of the R121W mutation of PAX4 and characterized the prodiabetic phenotype in a population-based study. Healthy 372 residents participated in annual health check-ups in Nishihara (Okinawa, Japan) and unrelated 193 type 2 diabetic patients from the outpatient clinic of Ryukyu University Hospital were enrolled. Diagnosis of diabetes was based on the 1997 American Diabetes Association criteria. The R121W mutation in PAX4 was genotyped by PCR-RFLP analysis. In healthy residents, R121W mutation was detected in 12 of 372 residents (3.1%). The prevalence of newly diagnosed type 3 diabetes (25% vs. 5%, p=0.004) and HbA(1c) (5.6+/-1.9 vs. 5.1+/-0.7, p=0.026) was higher in the variants than in the wild-types. The odds ratio of diabetes in the R121W variants was 5.98 with 95% confidence interval from 1.50 to 23.9. The R121W mutation was observed in 12 of the 193 type 2 diabetic patients (6.2%). Onset-ages of diabetes were earlier (37+/-10 vs. 47+/-13 years, p=0.010) and the rate of insulin user was two times higher (83% vs. 41%, p=0.005) in the variants. The R121W mutation in PAX4 is a predisposing factor for the development of type 2 diabetes in Okinawans.
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http://dx.doi.org/10.1016/s0006-291x(03)00176-1 | DOI Listing |
Pharmacol Res
July 2021
Bio@SNS Laboratory of Biology, Scuola Normale Superiore, Pisa, Italy; Section of Physiology, Department of Neuroscience and Rehabilitation, University of Ferrara, Ferrara, Italy. Electronic address:
Nerve growth factor (NGF), by binding to TrkA and p75 receptors, regulates the survival and differentiation of sensory neurons during development and mediates pain transmission and perception during adulthood, by acting at different levels of the nervous system. Key to understanding the role of NGF as a pain mediator is the finding that mutations (namely, R121W, V232fs and R221W) in the NGF gene cause painlessness disease Hereditary Sensory and Autonomic Neuropathy type V (HSAN V). Here we shall review the consequences of these NGF mutations, each of which results in specific clinical signs: R221W determines congenital pain insensitivity with no overt cognitive disabilities, whereas V232fs and R121W also result in intellectual disability, thus showing similarities to HSAN IV, which is caused by mutations in TrkA, rather than to HSAN V.
View Article and Find Full Text PDFNeurology
April 2021
From the Edmond J. Safra Program in Parkinson's Disease and the Morton and Gloria Shulman Movement Disorders Clinic (J.F.B., A.E.L.), Toronto Western Hospital and University of Toronto, Ontario, Canada; Department of Neurology (J.F.B.), University of Geneva and University Hospitals of Geneva, Switzerland; Department of Internal Medicine (S.C., F.C.), Universidade Federal de Minas Gerais, Belo Horizonte; Hospital Israelita Albert Einstein (C.O.d.S., R.D.P., P.d.C.A.), Sao Paulo, SP, Brazil; Departments of Neurology (D.S.K., T.L.) and Neurosurgery (D.S.K.), University of Colorado School of Medicine; Aurora; Department of Neurology and Neurosurgery (F.P.d.S.-J., E.R.B., P.d.C.A.), Universidade Federal de Sao Paulo, SP, Brazil; and Department of Neurology (R.Y., L.J.O.), Massachusetts General Hospital, Boston. Dr. Bally is currently at Service of Neurology, Department of Clinical Neurosciences, Lausanne University Hospital and University of Lausanne, Switzerland.
Objective: To report 4 novel mutations leading to laryngeal and cervical dystonia with frequent generalization.
Methods: We screened 4 families including a total of 11 definitely affected members with a clinical picture resembling the original description.
Results: Four novel variants in the gene have been identified: D295N, R46M, Q424H, and R121W.
Channels (Austin)
December 2020
Institute of Biochemistry and Molecular Medicine, University of Bern, Bern, Switzerland.
The cardiac voltage-gated sodium channel Na1.5 conducts the rapid inward sodium current crucial for cardiomyocyte excitability. Loss-of-function mutations in its gene are linked to cardiac arrhythmias such as Brugada Syndrome (BrS).
View Article and Find Full Text PDFBMJ Open Ophthalmol
February 2019
Pediatric, Universitair Medisch Centrum Groningen, Groningen, The Netherlands.
Objective: Retinopathy of prematurity (ROP) is a major cause of blindness in newborn infants, which also occurs in low-income and middle-income countries. Why ROP progresses in some infants while it regresses in others is still presently unknown. Studies suggest that genetic factors might be involved.
View Article and Find Full Text PDFMol Pain
February 2019
1 Cambridge Institute for Medical Research, Addenbrooke's Biomedical Research Centre, Cambridge, UK.
Bi-allelic dysfunctional mutations in nerve growth factor (NGF) cause the rare human phenotype hereditary sensory and autonomic neuropathy type 5 (HSAN5). We describe a novel NGF mutation in an individual with typical HSAN5 findings. The mutation c.
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