Using amplification, allele-specific oligonucleotide (ASO) hybridization and DNA sequencing we have documented the molecular basis of 64 alpha- and 123 beta-thalassemia (thal) chromosomes, and the haplotypes of 18 beta S chromosomes from patients followed in three hospitals in Kuwait. Of the 30 chromosomes from 15 patients with Hb H disease, 26 (86.7%) carried the polyadenylation (poly A) signal mutation (AATAAA-->AATAAG) in the alpha 2-globin gene, 3 (10%) had the -alpha (3.7 kb) deletion, and 1 (3.3%) had the pentanucleotide deletion in the 5' IVS-I splice junction (alpha-5nt alpha). As many as 12 different beta-thal mutations were identified; 6 Mediterranean alleles [IVS-II-1 (G-->A), IVS-I-6 (T-->C), codon (CD) 39 (C-->T), IVS-I-110 (G-->A), CD 8 (-AA), and IVS-I-1 (G-->A)] were present in 79 (64.2%) of the chromosomes tested. Four East Indian alleles [IVS-I-5 (G-->C), IVS-I 3' end -25 nt deletion, CDs 8/9 (+G), and 619-bp deletion] were found in 31 (25%), and the two Kurdish/Iranian alleles [CD 44 (-C) and CDs 36/37 (-T)] were found in 13 (10.6%) chromosomes. Fourteen beta S chromosomes carried haplotype No. 31 (Saudi Arabia/India); 3 had haplotype No. 19 (Benin), and 1 was a hybrid with haplotype No. 31-specific characteristics in the locus control region hypersensitive site-2 (LCR-HS-2), and haplotype No. 19-specific mutations in the 5' flanking region of the G gamma-promoter. The patient homozygous for haplotype No. 19 was a Jordanian, while the others were Kuwaiti Arabs. The latter appear to be fairly homogeneous in terms of the prevalent alpha-thal determinants and beta S-haplotypes, but there is considerable heterogeneity of their beta-thal alleles. This has implications for genetic counseling and prenatal diagnosis programs.
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Front Endocrinol (Lausanne)
December 2024
Genetics and Bioinformatics Department, Dasman Diabetes Institute, Kuwait City, Kuwait.
Background: Numerous studies have linked mitochondrial dysfunction to the development of type 2 diabetes (T2D) by affecting glucose-stimulated insulin secretion in pancreatic beta cells and reducing oxidative phosphorylation in insulin-responsive tissues. Given the strong genetic underpinnings of T2D, research has explored the connection between mitochondrial DNA haplogroups, specific variants, and the risk and comorbidities of T2D. For example, haplogroups F, D, M9, and N9a have been linked to an elevated risk of T2D across various populations.
View Article and Find Full Text PDFFront Endocrinol (Lausanne)
October 2024
Genetics and Bioinformatics Department, Dasman Diabetes Institute, Kuwait City, Kuwait.
J Int Med Res
May 2024
Department of Rheumatology, Faculty of Medicine, Al Azhar University, Egypt.
Kikuchi-Fujimoto disease (KFD), also known as histiocytic necrotizing lymphadenitis, is a rare, benign condition affecting young Oriental-Asian females. It is characterized by fever and tender cervical lymphadenopathy with an unclear aetiology, and in most longitudinal reviews, KFD occurs before systemic lupus erythematosus (SLE). Herein, the case of a 28-year-old Kuwaiti female without any relevant past medical history, who was simultaneously diagnosed with KFD and SLE following an Ebstein-Barr virus infection, is reported.
View Article and Find Full Text PDFJ Trop Pediatr
December 2023
Department of Pediatrics, College of Medicine-Kuwait University, Kuwait City, Safat 13110, Kuwait.
Objectives: TNF-α is a pro-inflammatory cytokine that has been implicated in many inflammatory diseases, but its association with idiopathic nephrotic syndrome (INS) is poorly understood. This study looked for an association of TNF-α gene polymorphisms with INS, as well as its effect on steroid responsiveness among Kuwaiti Arab children.
Methods: Genotypes of the TNF-a gene polymorphisms were analyzed using polymerase chain reaction-restriction fragment length polymorphism in 151 INS Kuwaiti Arab patients and 64 age and sex-matched controls.
Int J Mol Sci
November 2023
Department of Biological Sciences, College of Science, Kuwait University, Farwaniya 85700, Kuwait.
Apolipoprotein CII (ApocII) plays a key role in regulating lipoprotein lipase (LPL) in lipid metabolism and transport. Numerous polymorphisms within are reportedly associated with type 2 diabetes mellitus (T2DM), dyslipidemia, and aberrant plasma lipid levels. Few studies have investigated sequence variants at loci and their association with metabolic disorders.
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