Nucleotide sequences from a rabbit alpha globin gene inserted in a chimeric plasmid

Science ◽  
1977 ◽  
Vol 196 (4286) ◽  
pp. 192-195 ◽  
Author(s):  
A. Liu ◽  
G. Paddock ◽  
H. Heindell ◽  
W Salser
1992 ◽  
Vol 267 (12) ◽  
pp. 8478-8484 ◽  
Author(s):  
H Zorbas ◽  
T Rein ◽  
A Krause ◽  
K Hoffmann ◽  
E.L. Winnacker

Blood ◽  
1988 ◽  
Vol 71 (2) ◽  
pp. 313-319 ◽  
Author(s):  
SL Thein ◽  
RB Wallace ◽  
L Pressley ◽  
JB Clegg ◽  
DJ Weatherall ◽  
...  

In a previous study, we described a form of nondeletion alpha- thalassemia (alpha T Saudi alpha) found in subjects of Saudi Arabian origin. In the current study, using synthetic oligoprobe hybridization and restriction enzyme analysis, we have demonstrated that the molecular basis of alpha T Saudi alpha is due solely to a single base mutation (AATAAA----AATAAG) in the polyadenylation signal of the alpha 2 gene and that the frameshift mutation in codon 14 of the linked alpha 1 gene is the result of a cloning artefact. The alpha 2 polyadenylation signal mutation occurs in other Middle Eastern and the Mediterranean populations and is responsible for the clinical phenotype of Hb H disease in some Saudi Arabian individuals with five alpha genes (alpha T Saudi alpha/(alpha alpha alpha)T Saudi). Evidence suggests that the (alpha alpha alpha)T Saudi haplotype has arisen as a result of a recombination between two misaligned chromosomes bearing the alpha T Saudi alpha defect.


Blood ◽  
1986 ◽  
Vol 68 (6) ◽  
pp. 1394-1397
Author(s):  
KG Yang ◽  
JZ Liu ◽  
F Kutlar ◽  
A Kutlar ◽  
C Altay ◽  
...  

We have studied the hematology, hemoglobin composition, and globin gene arrangements in one young Turkish boy with a beta zero-thalassemia homozygosity and in 11 of his relatives. Evidence is presented that the chromosome with the beta zero-thalassemia determinant carries a gamma- globin gene quadruplication, perhaps in a -G gamma-G gamma-G gamma-A gamma-gene arrangement. The eight gamma-globin genes in this patient produced G gamma and A gamma chains in a 95 to 5 ratio, and nearly 99% of the patient's hemoglobin was of the fetal type. The clinical condition resembled that of a thalassemia intermedia. HbF levels in eight beta-thalassemia heterozygotes varied between 0.5 and 4.2% and the percentages of G gamma in this HbF averaged at 87% or 95%; this level is to some extent related to the haplotype of the normal chromosome. All subjects carried four alpha-globin genes; a new BglII polymorphism was observed within the psi alpha-globin gene.


Blood ◽  
2019 ◽  
Vol 134 (Supplement_1) ◽  
pp. 4843-4843
Author(s):  
Marcus A. Carden ◽  
Jonathan Metts ◽  
John M. McCarty ◽  
Sarah Mitchell ◽  
Bradley Carthon ◽  
...  

Background: Renal medullary carcinoma (RMC) is a rare, aggressive form of renal cell carcinoma almost exclusively (>90%) diagnosed in individuals with sickle cell trait (SCT), and 2/3 of those affected are male. Based on population-surveillance data, only 246 patients were diagnosed with RMC between 2005-2014 (Carden etal. J Sickle Cell Disease and Hemoglobinopathies, 2018) and many patients have metastatic disease at diagnosis (Msaeoul et al., Clin Genitourin Cancer, 2019). Median overall survival (OS) in patients with metastatic RMC (mRMC) at diagnosis is less than 12 months and predictors of survival are largely unknown, although case reports suggest novel chemotherapeutic strategies are important (Carden et al., Ped Blood Cancer, 2017&2018). The role SCT plays in RMC pathobiology, however, is largely unknown, as many patients do not have a complete hemoglobin subtype profile completed at diagnosis. Studies evaluating sickle hemoglobin concentrations (%HbS) in relation to survival for patients with RMC are needed, as SCT is associated with renal dysfunction and researchers have hypothesized that HbS polymerization within red cells traversing the kidney disrupts blood perfusion, which leads to kidney injury and an increased possibility for cancer formation (Msaeoul et al, Clin Cancer Res, 2018). Patients with %HbS≤36%, such as patients with SCT and concomitant alpha-globin gene deletion(s) might be protected against HbS polymerization and renal concentrating defects (Gupta etal., J Clin Invest, 1991). We hypothesize that lower %HbS is associated with higher survival. In this preliminary multi-institutional study, we retrospectively reviewed available charts from patients diagnosed with mRMC and SCT to evaluate for an association between %HbS and OS. Methods: We found nine patients (3 adults, 6 children) who were diagnosed with mRMC and SCT at our various institutions between 2002-2017 who had survival data. Eight patients had %HbS levels by hemoglobin quantification at diagnosis. In a post-hoc analysis, patients were separated into two groups (%HbS>36% and %HbS≤36%), levels similar to that found in patients with alpha-globin gene deletions described by Gupta et al. Fit-curves were determined for OS vs. %HbS. Three-year OS was determined using Kaplan-Meier analysis and the log-rank method. P<0.05 was considered statistically significant. Results: Clinical characteristics of patients are shown in Table 1. Average age (standard deviation) at diagnosis was 15.2 years (4.9) and most patients were male (87.5%). Six patients had %HbS >36% and 2 patients had %HbS ≤36%. Median OS was 17.8 months. Using fit-function testing, analysis of survival vs. %HbS yielded an exponential relationship (R2=0.69), suggesting higher survival when %HbS≤36% (p=0.05). OS of the two patients with %HbS≤36% was greater than those with %HbS>36%, though results were not statistically significant (p = 0.09). Conclusion: While there are limitations to this small, retrospective analysis, these data suggest that lower intracellular red cell %HbS concentrations could be protective in patients with mRMC and SCT. Chemotherapy and other treatment regimens may also play a role in survival and need to be studied. Further investigation is needed to determine the role SCT plays in RMC pathobiology and to determine if %HbS concentrations, as well as alpha-thalassemia deletion(s), may be protective in patients with RMC. Disclosures Carden: GBT: Honoraria; NIH: Research Funding.


Blood ◽  
1996 ◽  
Vol 88 (5) ◽  
pp. 1846-1851 ◽  
Author(s):  
J Chang ◽  
RH Lu ◽  
SM Xu ◽  
J Meneses ◽  
K Chan ◽  
...  

We have disrupted the 5′ locus of the duplicated adult alpha-globin genes by gene targeting in the mouse embryonic stem cells and created mice with alpha-thalassemia syndromes. The heterozygous knockout mice (.alpha/alpha alpha) are asymptomatic like the silent carriers in humans whereas the homozygous knockout mice (.alpha/.alpha) show hemolytic anemia. Mice with three dysfunctional alpha-globin genes generated by breeding the 5′ alpha-globin knockouts (.alpha/alpha alpha) and the deletion type alpha-thalassemia mice (../alpha alpha) produce severe hemoglobin H disease and they die in utero. These results indicate that the 5′ alpha-globin gene is the predominant locus in mice, and suggest that it is even more dominant than its human homologue.


1988 ◽  
Vol 8 (11) ◽  
pp. 5047-5051
Author(s):  
G F Atweh ◽  
J M Liu ◽  
H E Brickner ◽  
X X Zhu

We have studied the cis and trans interactions of the alpha- and beta-globin genes in a transient expression system. We found that the alpha-globin gene inhibited beta-globin expression in cis but not in trans. The silencer element responsible for this inhibition was localized to a 259-base-pair fragment at the 5' end of the alpha-globin gene.


Development ◽  
1992 ◽  
Vol 116 (4) ◽  
pp. 1041-1049 ◽  
Author(s):  
A. Leder ◽  
A. Kuo ◽  
M.M. Shen ◽  
P. Leder

Murine erythropoiesis begins with the formation of primitive red blood cells in the blood islands of the embryonic yolk sac on day 7.5 of gestation. By analogy to human erythropoiesis, it has been thought that there is a gradual switch from the exclusive expression of the embryonic alpha-like globin (zeta) to the mature adult form (alpha) in these early mouse cells. We have used in situ hybridization to assess expression of these two globin genes during embryonic development. In contrast to what might have been expected, we find that there is simultaneous expression of both zeta and alpha genes from the very onset of erythropoiesis in the yolk sac. At no time could we detect expression of embryonic zeta globin mRNA without concomitant expression of adult alpha globin mRNA. Indeed, adult alpha transcripts exceed those of embryonic zeta in the earliest red cell precursors. Moreover, the pattern of hybridization reveals co-expression of both genes within the same cells. Even in the fetal liver, which supersedes the yolk sac as the major site of murine fetal erythropoiesis, there is a brief co-expression of zeta and alpha genes followed by the exclusive expression of the adult alpha genes. These data indicate an important difference in hematopoietic ontogeny between mouse and that of human, where zeta expression precedes that of alpha. In addition to resolving the embryonic expression of these globin genes, our results suggest that the embryonic alpha-like globin gene zeta may be physiologically redundant, even during the earliest stages of embryonic development.


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