Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0039730 (thalassemia)
10,305 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

The ratio of Ggamma to Agamma was studied in 13 normal healthy newborns and in eight neonates with hydrops fetalis due to homozygous alpha-thalassemia. The findings in the normal healthy newborns agreed with those of earlier reports. In homozygous alpha-thalassemia the Ggamma and Agamma ratio appeared generally lower than in healthy control newborns, but one of the hydrops fetalis cases had a very high Ggamma value. In all 13 normal healthy newborns, in 8 patients with homozygous alpha-thalassemia, and in 4 patients with homozygous beta-thalassemia, Tgamma chains with threonine at position 75 were detected in addition Igamma chains with isoleucine at position 75. In homozygous alpha-thalassemia, the Tgamma-to-Igamma ratio seemed lower and in homozygous beta-thalassemia higher than in normal newborns.
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PMID:Heterogeneity of hemoglobin gamma chains in normal newborns and in cases of alpha and beta thalassemia. 45 94

A 59-year-old man with beta-thalassaemia major is unusually well. He has no beta-chains in his haemoglobin but is heterozygous for the genes responsible for alphaA and for alphaG Philadelphia. In addition he is also heterozygous for the genes responsible for gammaF and a new gamma-chain, gamma75(E19) Ile-Thr, named gammaF Sardinia. It was not possible to isolate the mutant gamma-chain, but from the overall ratios of Ggamma-:Agamma-Chain and gamma75 Ile : gamma75 Thr, it could be inferred that the mutation had presumably occured in the Ggamma-chain. Some of the propositus' siblings have high levels of Hb A2, and it is suggested that they possibly carry a gene for Lepore chain with the deltabeta-crossover after residue delta126.
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PMID:A new Hb variant: Hb F Sardinia gamma75(E19) isoleucine leads to threonine found in a family with Hb G Philadelphia, beta-chain deficiency and a Lepore-like haemoglobin indistinguishable from Hb A2. 80 40

We have determined the beta S haplotypes in 709 patients with sickle cell anemia, 30 with SC disease, 91 with S-beta-thalassemia, and in 322 Hb S heterozygotes from different countries. The methodology concerned the detection of mutations in the promoter sequences of the G gamma- and A gamma-globin genes through dot blot analysis of amplified DNA with 32P-labeled probes, and an analysis of isolated Hb F by reversed phase high performance liquid chromatography to detect the presence of the A gamma T chain [A gamma 75(E19)Ile----Thr] that is characteristic for haplotype 17 (Cameroon). The results support previously published data obtained with conventional methodology that indicates that the beta S gene arose separately in different locations. The present methodology has the advantage of being relatively inexpensive and fast, allowing the collection of a vast body of data in a short period of time. It also offers the opportunity of identifying unusual beta S haplotypes that may be associated with a milder expression of the disease. The numerous blood samples obtained from many SS patients living in different countries made it possible to compare their hematological data. Such information is included (as average values) for 395 SS patients with haplotype 19/19, for 2 with haplotype 17/17, for 50 with haplotype 20/20, for 2 with haplotype 3/3, and for 37 with haplotype 31/31. Some information on haplotype characteristics of normal beta A chromosomes is also presented.
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PMID:Beta S haplotypes in various world populations. 157 73

We have identified a new stable abnormal hemoglobin called Hb Valletta, which is characterized by a Thr----Pro substitution at position 87 of the beta chain. This mutation was found to be linked to that of the gamma chain variant Hb F-Malta-I with a His----Arg mutation at position 117 of the G gamma chain. Both variants were detected in the blood samples of 34 Maltese and two Italian newborn babies with isoelectrofocusing and reversed phase high performance liquid chromatography. Similar analyses of cord blood from 388 additional Maltese newborns failed to identify either one of these two variants. Additional analyses of 353 Maltese adults (including 39 beta-thalassemia heterozygotes) resulted in the detection of two adult Hb Valletta heterozygotes. Dot-blot hybridization analyses of amplified DNA with a probe specific for the G gamma-F-Malta-I variant showed that both also carried that mutation. These results show close linkage of the mutant forms of the G gamma- and beta-globin genes, 27-28 kb apart, and a failure to identify chromosomes with either the Hb F-Malta-I mutation alone or with the Hb Valletta mutation alone, indicating a low recombination frequency.
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PMID:The linkage of Hb Valletta [alpha 2 beta 287(f3)Thr----Pro] and Hb F-Malta-I [alpha 2G gamma 2117(G19)His----Arg] in the Maltese population. 170 34

This study concerned the gamma chain composition of Hb F and the haplotypes of 44 patients with beta-thalassemia major or intermedia and many of their relatives. Seventeen patients came from Northern (Turkish) Cyprus, 12 from the Istanbul area, and 15 from Macedonia and Bulgaria. Analysis of the A gamma T-G gamma-A gamma I ratio was made by HPLC, while haplotyping involved seven restriction sites. Specific haplotypes were present in certain populations; haplotype I [1] is the dominant type among North Cypriot thalassemia patients. Numerous types were seen in the patients from the Balkan countries. A direct relationship between the A gamma to G gamma ratios and the haplotypes, which exists among black beta-thalassemia heterozygotes [3], was also observed among these Mediterranean patients, although such analyses were considerably complicated by extensive blood transfusion therapy. Haplotypes without the Hinc II restriction site within the psi beta gene were associated with lower G gamma values than those that had this polymorphic site. The A gamma T chain was observed in a small number of beta-thalassemia homozygotes and heterozygotes. Three thalassemia chromosomes with slightly different haplotypes and one normal chromosome with a related haplotype were associated with the gamma 75 Ile----Thr substitution. A few patients with a thalassemia intermedia were heterozygotes for beta-thalassemia with either haplotypes V or VII [1] while the "nonthalassemic" chromosome had a haplotype I, which is the most common "beta-thalassemic" haplotype among the Mediterranean population(s). Detailed analyses of this chromosome have not been completed.
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PMID:Haplotypes and levels of fetal hemoglobin and G gamma to A gamma ratios in Mediterranean patients with thalassemia minor and major. 241 Nov 30

The occurrence of the A gamma T chain (i.e. A gamma 75 Ile----Thr) in different populations was evaluated through a study of 4250 cord blood samples and blood samples from more than 350 SS patients. High frequencies were observed in Italy, Yugoslavia, Turkey, Holland, but also in Japan, Vietnam, and India. The chain is (nearly) absent in the Black population of Ghana and Kenya, and low frequencies were observed in China and Australian aborigines. Only a few adult SS patients (18 out of 357) were A gamma T heterozygotes. The chromosomes with the A gamma T globin gene were mapped through an evaluation of the presence of 10 different restriction sites. The A gamma T chromosomes from different populations were closely related and had the same subhaplotypes of [- - + + T - +] (Hinc II 5' to epsilon; Xmn I 5' to G gamma; Hind III in G gamma and A gamma; Hinc II in and 3' to psi beta), quite different from the subhaplotypes seen for A gamma T negative chromosomes. This suggests a common ancestor which may have originated in Southern Europe. An evaluation of the gamma chain production by both chromosomes in SS patients and beta-thalassemia heterozygotes was possible for subjects with an A gamma T heterozygosity. It was concluded that in beta-thalassemia trait, the gamma chain synthesis is directed for about two-thirds by the thalassemic chromosome and for about one-third by the normal chromosome; the contribution by the normal chromosome decreases with a decrease in total gamma chain production.
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PMID:The frequency of the gamma chain variant A gamma T in different populations, and its use in evaluating gamma gene expression in association with thalassemia. 241 45

The relative proportions of gamma chains of human fetal haemoglobin G gamma, A gamma 75 Ileu (A gamma I) and A gamma 75 Thr (A gamma T) were investigated in homogeneous populations of patients in Algeria exhibiting sickle cell disease and in patients in Algeria and Sardinia with beta-thalassaemia. The restriction site haplotypes within the beta gene cluster were known. The results suggest a tight genetic regulation of the G gamma/A gamma + G gamma ratio (G gamma ratio) which is associated with the G gamma Hind III site of polymorphism (p less than 0.0001). From the present results and those in the literature the high G gamma ratio is associated with the presence of 3 polymorphic restriction sites: Xmn1 5' to the G gamma gene, Hind III in the G gamma IVS II and Hinc II in the psi beta gene. Familial studies showed that the expression of the A gamma alleles is genetically determined. The wide variation of the A gamma T/A gamma T + A gamma I ratio (A gamma ratio) between families is most probably related to the various haplotypes bearing the A gamma I alleles.
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PMID:Genetic control of the proportion of gamma chains of human fetal haemoglobin. 243 Feb 59

We have characterized a Mediterranean beta-thalassemia allele containing a sequence change at codon 30 that alters both beta-globin pre-mRNA splicing and the structure of the hemoglobin product. Presumably, this G----C transversion at position -1 of intron 1 reduces severely the utilization of the normal 5' splice site since the level of the Arg----Thr mutant hemoglobin (designated hemoglobin Kairouan) found in the erythrocytes of the patient is very low (2% of total hemoglobin). Since no natural mutations of the guanine located at position -1 of the CAG/GTAAGT consensus sequence had been isolated previously, we investigated the role of this nucleotide in the constitution of an active 5' splice site by studying the splicing of the pre-mRNA in cell-free extracts. We demonstrate that correct splicing of the mutant pre-mRNA is 98% inhibited. Our results provide further insights into the mechanisms of pre-mRNA maturation by revealing that the last residue of the exon plays a role at least equivalent to that of the intron residue at position +5.
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PMID:A 5' splice-region G----C mutation in exon 1 of the human beta-globin gene inhibits pre-mRNA splicing: a mechanism for beta+-thalassemia. 291 72

Fetal hemoglobin analysis and globin gene mapping have identified one type of beta(0)-thalassemia and four different gamma globin gene arrangements among newborn babies from the northern part of Sardinia. The beta(0)-thalassemia with a nonsense mutation at codon 39 was found on two chromosomes, each with a distinct pattern of polymorphic restriction sites; one had the A gamma T (A gamma 75 Ile----Thr) mutation, while the second did not. Four closely related haplotypes were identified for chromosomes with the A gamma T mutation. The gamma-thalassemia heterozygosity with the -GA gamma- hybrid gene fell into two categories. One apparently originated through crossing-over between mismatched chromosomes characterized by the most common haplotype, while the other had polymorphisms resembling those of a less frequently occurring chromosome. Chromosomes with the -G gamma-AG gamma-A gamma- triplication had polymorphic sites to be expected for this condition, being complimentary to the -GA gamma- thalassemias. Of the two additional gamma globin gene variations the -G gamma- G gamma- arrangement was associated with the chromosome with the most commonly occurring haplotype, while the chromosome with the -A gamma-A gamma- arrangement had a haplotype characteristic for that with the A gamma T mutation, which identified an -A gamma-A gamma T- arrangement. The incidental discovery of a silent beta-chain mutant, Hb Hamilton, with the Val----Ile substitution at position beta 11, in five newborns was also reported.
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PMID:DNA polymorphisms in North Sardinian newborns and their linkage with abnormal gamma globin gene arrangements and with beta (0) -thalassemia. 377 25

The hematological phenotypes of several Mediterranean patients with delta beta-thalassemia and hereditary persistence of fetal hemoglobin have been characterized. Although clinical and hematological characteristics are essentially superimposable in all heterozygous delta beta-thalassemics, these patients show typical G gamma/A gamma ratios in their Hb F, ranging from approximately 0.07 in Sardinian to approximately 0.15 in Sicilian and approximately 0.35 in Spanish patients. A gamma Sardinian-(isoleucine-75 leads to threonine) is found in Spanish patients and accounts for all of the A gamma production in heterozygotes, indicating that persistent production of gamma chains occurs cis to the delta beta-thalassemia gene. The molecular heterogeneity of these conditions is demonstrated by restriction enzyme mapping of DNA; Sicilian and Calabrian patients show a deletion starting from the delta-globin intron and extending several kilobases 3' to the beta-globin gene; in Spanish patients the deletion starts approximately 2-3 kilobases 5' to the delta-globin gene and extends well beyond the beta-globin gene. Comparison of these deletions with previously described ones in Negro and in a new Southern Italian case of hereditary persistence of fetal hemoglobin suggests that the deletion of a region centered at a cluster of repetitive sequences approximately 3.5 kilobases 5' to the delta-globin gene may be critical for the persistent expression of high levels of gamma-globin in hereditary persistence of fetal hemoglobin compared to delta beta-thalassemia. The concept that the deletion or mutation of specific areas (rather than nonspecific changes brought about by large deletions in the globin cluster) is important in determining the persistent expression of gamma-globin genes is supported by the finding of a nondeletion type of delta beta-thalassemia in Sardinians.
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PMID:Molecular comparison of delta beta-thalassemia and hereditary persistence of fetal hemoglobin DNAs: evidence of a regulatory area? 617 97


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