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1.
Hemoglobin ; 47(2): 52-55, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37309066

ABSTRACT

In area where α-thalassemia and ß-thalassemia are prevalent, the coinheritance of hemoglobin H disease (Hb H disease) and ß-thalassemia are not uncommon and could result in complex thalassemia intermedia syndromes. In this study, we investigate the hematological and molecular characteristics of two previously undescribed cases that co-inherited Hb H disease and rare ß-globin gene (HBB) mutations found in Chinese populations. Proband I was a boy with Hb H disease in association with IVS-II-5(G > C) (HBB:c0.315 + 5G > C) mutation. Proband II was a boy with a combination of Hb H and Hb Zengcheng [ß114(G16) Leu > Met; HBB:c.343C > A]. Both of them had mild hypochromic microcytic anemia, and neither had ever received a blood transfusion. In both cases, the level of Hb A2 was within normal range, and no Hb H was detected, but a small amount of Hb Bart's was observed in proband I. Routine DNA analysis detected the deletional Hb H disease in both cases. IVS-II-5(G > C) (HBB:c0.315 + 5G > C) and Hb Zengcheng (HBB:c.343C > A) mutations were found by DNA sequencing of ß-globin gene. The co-inheritance of Hb H disease with rare ß-thalassemia may result in an atypical pattern of Hb H disease, and further investigation of rare genotypes should be conducted to avoid missed diagnosis.


Subject(s)
alpha-Thalassemia , beta-Thalassemia , Humans , alpha-Thalassemia/diagnosis , alpha-Thalassemia/genetics , beta-Globins/genetics , beta-Thalassemia/diagnosis , beta-Thalassemia/genetics , Mutation , Phenotype , Genotype
2.
BMC Biol ; 19(1): 67, 2021 04 08.
Article in English | MEDLINE | ID: mdl-33832502

ABSTRACT

BACKGROUND: Trachypithecus leucocephalus, the white-headed langur, is a critically endangered primate that is endemic to the karst mountains in the southern Guangxi province of China. Studying the genomic and transcriptomic mechanisms underlying its local adaptation could help explain its persistence within a highly specialized ecological niche. RESULTS: In this study, we used PacBio sequencing and optical assembly and Hi-C analysis to create a high-quality de novo assembly of the T. leucocephalus genome. Annotation and functional enrichment revealed many genes involved in metabolism, transport, and homeostasis, and almost all of the positively selected genes were related to mineral ion binding. The transcriptomes of 12 tissues from three T. leucocephalus individuals showed that the great majority of genes involved in mineral absorption and calcium signaling were expressed, and their gene families were significantly expanded. For example, FTH1 primarily functions in iron storage and had 20 expanded copies. CONCLUSIONS: These results increase our understanding of the evolution of alkali tolerance and other traits necessary for the persistence of T. leucocephalus within an ecologically unique limestone karst environment.


Subject(s)
Colobinae , Alkalies , Animals , China , Genome , Presbytini , Transcriptome
3.
Hemoglobin ; 44(6): 402-405, 2020 Nov.
Article in English | MEDLINE | ID: mdl-33198537

ABSTRACT

ß-Thalassemia (ß-thal) is a hereditary blood disorder characterized by the reduced or absent synthesis of ß-globin chains. Here, we report a case of severe thalassemia with compound heterozygosity for a novel deletion mutation at codon 104 (-A) (HBB: c.313delA) and codons 41/42 (-CTTT) (HBB: c.126_129delCTTT) on the ß-globin gene (HBB), and a coinheritance of the -α4.2 (leftward) deletion on the α-globin gene cluster. The proband was a 12-year-old boy, and four other family members were involved in this study. This novel frameshift mutation caused classical ß-thal trait in the heterozygote and a transfusion-dependent form of ß-thal major (ß-TM) in compound heterozygosity with other ß0 mutations.


Subject(s)
Asian People/genetics , Codon , Heterozygote , Mutation , beta-Globins/genetics , beta-Thalassemia/diagnosis , beta-Thalassemia/genetics , Alleles , Amino Acid Substitution , Child , China , DNA Mutational Analysis , Erythrocyte Indices , Exons , Female , Frameshift Mutation , Humans , Male , Pedigree
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