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G P Rodgers

Publications and source records attributed to G P Rodgers.

At least 37 records · Page 2Linked to original sources

Hydroxyurea induces a senescence-like change of K562 human erythroleukemia cell.

Hydroxyurea, a differentiation-inducing agent of human erythroleukemia K562 cells, is commonly used to treat some types of leukemia. However, the mechanism for its therapeutic effect is not clearly understood yet. In this study, we have observed an interesting effect of hydroxyurea on tumor cells: an induction of senescence-like changes. Human erythroleukemia K562 cells, when treated with hydroxyurea for 7 days or more, underwent a change into phenotypically senescent cells together with a reduction of hemoglobin generation, a differentiation marker. The hydroxyurea-treated cells showed positive senescence associated-beta-galactosidase staining, a senescence index, and the accumulation of cdk (cyclin dependent kinase) inhibitors, such as p16INK4a, p21Waf1, and p27Kip1, implicated in cellular senescence. Nonetheless, these changes were not accompanied by DNA fragmentation. Taken together, we summarize that the long-term treatment of cancer cells with hydroxyurea can induce cellular senescence different from differentiation or programmed cell death.

Antineoplastic Agents↗

Prospective identification of erythroid elements in cultured peripheral blood.

We have developed a prospective approach to identify the generation of erythroid cells derived from cultured peripheral blood mononuclear cells (PBMC) by monitoring the expression of the cell surface protein CD48. Unpurified populations of PBMC obtained from the buffy coats of normal volunteers were grown in suspension culture in the absence or presence of erythropoietin. A profile of surface CD48 expression permitted a flow cytometric identification of erythropoietin responsive populations at various stages of their maturation. In the absence of erythropoietin (EPO) supplemented media, the CD48- cells represented <5% of the total population of PBMC remaining in culture. In cultures supplemented with 1 U/mL EPO, the mean percentage of CD48- cells increased to 34.7 + 14.9% (p < 0.01) after 14 days in culture. Coordinated CD34 and CD71 (transferrin receptor) expression, morphology, gamma-globin transcription, and colony formation in methylcellulose were observed during the 14-day culture period. Flow cytometric monitoring of bulk cultured PBMC provides a simple and reliable means for the prospective or real-time study of human erythropoiesis.

Adult↗

The delta-globin RNA transcript level in beta-thalassemia carriers.

Increased levels of hemoglobin A(2) (HbA(2)) are present in most beta-thalassemia carriers. The mechanism of this effect is not understood, although the increase may result from transcriptional and posttranscriptional changes. In the present study, we quantitate delta-globin mRNA levels in peripheral-blood-enriched reticulocytes and characterize the variation of delta-mRNA levels in 30 beta-thalassemia heterozygotes who individually carry one of the four common Chinese beta-thalassemia alleles [codons 41/42 (-TTCT); codon 17 (A-->T); IVS-II-654 (C-->T); -28 (A-->G)]. A sensitive and quantitative competitive reverse-transcriptase polymerase chain reaction method was developed and used to assess the absolute amounts of delta-mRNA transcripts in these peripheral erythroid cells. The results showed a large increase in delta-mRNA amounts in all the carriers examined (72.3 +/- 9.0 amol/microg RNA) as compared with those in 12 controls (1.2 +/- 0.2 amol/ microg RNA). There was a direct correlation between the delta-mRNA levels and types of beta-thalassemia alleles; generally, the delta-mRNA levels are higher in heterozygotes for beta(0)-thalassemia mutations than beta(+)-thalassemia mutations. The delta-mRNA levels correlated inversely with hemoglobin and red cell indices but directly with HbA(2) levels in heterozygotes of each of the group of beta-thalassemia mutations. These results suggest that a greater impairment in beta-globin gene expression results in increased transcription of delta-globin gene and in a higher level of HbA(2).

Asian People↗

Inhaled nitric oxide augments nitric oxide transport on sickle cell hemoglobin without affecting oxygen affinity.

Nitric oxide (NO) inhalation has been reported to increase the oxygen affinity of sickle cell erythrocytes. Also, proposed allosteric mechanisms for hemoglobin, based on S-nitrosation of beta-chain cysteine 93, raise the possibility of altering the pathophysiology of sickle cell disease by inhibiting polymerization or by increasing NO delivery to the tissue. We studied the effects of a 2-hour treatment, using varying concentrations of inhaled NO. Oxygen affinity, as measured by P(50), did not respond to inhaled NO, either in controls or in individuals with sickle cell disease. At baseline, the arterial and venous levels of nitrosylated hemoglobin were not significantly different, but NO inhalation led to a dose-dependent increase in mean nitrosylated hemoglobin, and at the highest dosage, a significant arterial-venous difference emerged. The levels of nitrosylated hemoglobin are too low to affect overall hemoglobin oxygen affinity, but augmented NO transport to the microvasculature seems a promising strategy for improving microvascular perfusion.

Administration, Inhalation↗

Thrombopoietin has a differentiative effect on late-stage human erythropoiesis.

To further explore the mechanism of the effect of thrombopoietin (TPO) on erythropoiesis, we used a two-phase culture system to investigate the effect of TPO on late-stage human erythroid lineage differentiation. In serum-free suspension and semisolid cultures of human peripheral blood derived erythroid progenitors, TPO alone did not produce benzidine-positive cells. However, in serum-containing culture, TPO alone stimulated erythroid cell proliferation and differentiation, demonstrated by erythroid colony formation, production of benzidine-positive cells and haemoglobin (Hb) synthesis. Monoclonal anti-human erythropoietin antibody and anti-human erythropoietin receptor antibody completely abrogated the erythroid differentiative ability of TPO in the serum-containing systems. This implied that binding of EPO and EPO-R was essential for erythropoiesis and the resultant signal transduction may be augmented by the signals emanating from TPO-c-Mpl interaction. Experiment of withdrawal of TPO further demonstrated the involvement of TPO in late-stage erythropoiesis. RT-PCR results showed that there was EPO-R but not c-Mpl expression on developing erythroblasts induced by TPO in serum-containing system. Our results establish that TPO affects not only the proliferation of erythroid progenitors but also the differentiation of erythroid progenitors to mature erythroid cells.

Cell Differentiation↗

Intravascular ultrasound evaluation of a pseudolesion created by stent placement in the right artery.

The creation of a pseudolesion after guidewire placement in tortuous arterial segments is a well recognized phenomenon. Intravascular ultrasound has been useful in assessing deployment of intracoronary stents and equivocal angiographic findings. We present a case in which a pseudolesion was not observed until after placement of an intracoronary stent. Intravascular ultrasound demonstrated no dissection or significant lesion; however, there was focal calcification just distal to the stent providing a substrate for the distorted vessel architecture. The lesion resolved with removal of the guidewire.

Blood Vessel Prosthesis Implantation↗

Identification of upstream regulatory elements that repress expression of adult beta-like globin genes in a primitive erythroid environment.

Our investigations have focused on localizing cis-elements responsible for the down regulation of the adult beta-like globin genes (delta and beta) in immature, or primitive erythroid tissues. We studied their activity after transfection into K562 cells, an erythroleukemia cell line with an embryonic-fetal phenotype. Analyzed DNA sequences included delta and beta 5' flanking regions extending from approximately -500 to +50bp (promoter regions), truncated delta and beta 5' flanking regions extending from approximately -250 to +50 bp, and chimeric promoter constructions, which consisted of a distal delta or beta fragment fused to a proximal beta or delta sequence. In CAT reporter constructions no appreciable level of CAT activity was supported by the beta globin promoter, and only low level activity by the delta promoter. Truncation of the beta globin promoter led to a 2-3 fold increase in promoter activity. In contrast, deletion of the upstream portion of the delta promoter led to a 10 fold decrease in expression. Coupling of the upstream beta globin sequence from approximately -500 to -250 bp to the truncated delta promoter fragment led to complete extinction of transcription activity, consistent with a negative regulatory effect of the beta globin gene upstream element(s). Fusion of the upstream portion of the delta promoter to the truncated beta globin promoter yielded a modest increase in promoter strength relative to the truncated beta gene promoter, indicating the presence of a positive transcriptional element(s) in the upstream delta globin regulatory region. Site-directed mutagenesis of binding sites for the repressor proteins BP1 and BP2 in the upstream portion of the beta globin gene flanking region led to a 4-6 fold increase in promoter activity. DNase I footprinting of the upstream delta-globin region revealed protected sequences corresponding to consensus binding sites for GATA-1 and BP2. These results confirm that sequences in the upstream promoter region of the adult beta globin gene contribute to its factor-mediated suppression early in development and then may modulate its expression at a later stage.

Binding Sites↗

Pharmacological therapy.

Collectively sickle cell disease and beta-thalassaemia are the most commonly inherited single-gene defects world-wide and were the first group of diseases for which DNA-based detection strategies were utilized. Although genotypically distinct, these two groups of diseases exhibit several common clinical features: moderate-to-severe haemolytic anaemia, acute and progressive tissue damage, disease- or treatment-related organ failure and premature death. Within the last two decades, a striking improvement in life expectancy in the two patient populations has been observed, by dint of primary and secondary prevention strategies. However, apart from bone marrow transplantation, a generally applicable, specific and non-toxic form of treatment remains unavailable for these disorders. Nonetheless, a greater appreciation of the developmental control of human globin gene expression coupled with observations of the effects of certain classes of agents to 'reverse' erythroid cellular phenotype in in vitro and animal models have led to pharmacological trials to obtain meaningful increases in haemoglobin F production in patients affected by these two severe beta-globin disorders. Contemporary understanding of the quantitative relationship between the abnormal molecules in the red cells (aggregates of sickle haemoglobin) in the sickle cell syndromes and aggregated alpha-globin polypeptides in the beta-thalassemia syndromes, and the extent of the red cell and/or organ involvement, has now enabled investigators to predict how much inhibition of these intracellular pathogenic processes might be necessary to achieve partial or total abrogation of disease manifestations. The results of the Multicenter Study of Hydroxyurea and other controlled trials now bear out these predictions.

Anemia, Sickle Cell↗

Activation of the human delta-globin gene promoter in primary adult erythroid cells.

Restoration of the CCAAT box or insertion of an erythroid Krüppel-like factor (EKLF) binding site in the delta promoter activates its expression in several erythroid cell lines. We extended these studies using a novel primary human adult erythroid cell (hAEC) system to investigate these effects at the late erythroblast stage. Restoration of the CCAAT box at -70 bp, or insertion of an EKLF binding site at -85 bp or -95 bp in the promoter significantly increased delta globin gene expression in hAEC. Our results demonstrate that the altered CCAAT box (CCAAC) and the lack of an EKLF binding site in delta-globin contribute to its low level of expression in the hAEC model as well.

Adult↗

Sickling of nucleated erythroid precursors from patients with sickle cell anemia.

The pathophysiology of sickle cell anemia is primarily explained in terms of the oxygen-dependent polymerization of sickle hemoglobin (HbS) followed by sickling of erythrocytes. Since the rate and extent of HbS polymerization depend on its intracellular concentration, it has been generally assumed that sickling occurs primarily in mature erythrocytes with their high intracellular hemoglobin concentration. In the present study, we investigated the propensity of nucleated erythroid precursors to undergo sickling; both cultured and fresh marrow-derived erythroid precursors from patients with homozygous sickle cell anemia were studied. The results revealed that upon deoxygenation cultured erythroblasts underwent characteristic morphological deformation in the form of fine, fragile, elongated spicules. Ultrastructural analysis demonstrated highly organized and tightly aligned hemoglobin fibers in the protruded regions. Bone marrow cells examined under partial or complete deoxygenated conditions displayed similar morphological changes. When cultured SS erythroid precursors were exposed to hydroxyurea or butyrate, drugs that may increase fetal hemoglobin (HbF) and inhibit intracellular polymerization, a significant decrease was observed in the propensity of these precursors to undergo sickling, accompanied by a three- to fivefold increase in HbF. These results suggest that, in addition to mature erythrocytes, nucleated erythroid precursors in the bone marrow have the capacity to undergo characteristic sickling as a result of HbS polymerization and may be involved in several aspects of the pathophysiology of sickle cell anemia. Treatment with HbF-stimulating drugs may benefit patients with this disease by inhibiting polymerization-induced sickling of erythroid precursors in the marrow as well as mature erythrocytes in the peripheral blood.

Anemia, Sickle Cell↗

Exercise-induced fragmentation hemolysis: a simple in vivo test to evaluate heart valve hemolysis.

Differentiating heart valve-related fragmentation hemolysis from other causes of hemolysis can occasionally be difficult, especially when findings on transthoracic or transesophageal echocardiography are minimal. We report a case in which the cause of hemolysis remained in doubt after thorough hematologic and cardiologic evaluations. The decision to reoperate on the valve was finally made, based on the result of exercise-induced increase in serum hemoglobin. Hemolytic anemia promptly resolved after reoperation. We believe this to be the first reported use of this in vivo test to support the diagnosis of valve-related hemolytic anemia.

Anemia, Hemolytic↗

In vivo footprinting using N-ethyl,N-nitrosourea: improved resolution of the DNA-protein interactions in the human gamma-globin gene promoter region.

N-Ethyl, N-nitrosourea (ENU) was used as a probing agent in conjunction with a modified ligation-mediated polymerase chain reaction in a new in vivo footprinting procedure. In the present work, we examined the promoter region of the human gamma-globin gene under both uninduced and hemin-induced conditions in K562 cells. In the course of comparing this method with the standard dimethyl sulfate (DMS) in vivo method and previously reported results, we were able to verify our new method. However, discrepancies between these methods were observed at the stage selector element, -50 region, of gamma-globin promoter. Our in vivo footprinting result showed DNA-protein interaction at this region under the hemin-induced condition which was not revealed by the conventional DMS in vivo footprinting method. This approach, using ENU-modified in vivo footprinting, is now being applied to clarify the mechanism of cytotoxic drug-induced fetal hemoglobin augmentation.

DNA↗

Restoration of the CCAAT box or insertion of the CACCC motif activates [corrected] delta-globin gene expression.

Hemoglobin A2 (HbA2), which contains delta-globin as its non-alpha-globin, represents a minor fraction of the Hb found in normal adults. It has been shown recently that HbA2 is as potent as HbF in inhibiting intracellular deoxy-HbS polymerization, and its expression is therefore relevant to sickle cell disease treatment strategies. To elucidate the mechanisms responsible for the low-level expression of the delta-globin gene in adult erythroid cells, we first compared promoter sequences and found that the delta-globin gene differs from the beta-globin gene in the absence of an erythroid Krüppel-like factor (EKLF) binding site, the alteration of the CCAAT box to CCAAC, and the presence of a GATA-1 binding site. Second, serial deletions of the human delta-globin promoter sequence fused to a luciferase (LUC) reporter gene were transfected into K562 cells. We identified both positive and negative regulatory regions in the 5' flanking sequence. Furthermore, a plasmid containing a single base pair (bp) mutation in the CCAAC box of the delta promoter, restoring the CCAAT box, caused a 5.6-fold and 2.4-fold (P < .05) increase of LUC activity in transfected K562 cells and MEL cells, respectively, in comparison to the wild-type delta promoter. A set of substitutions that create an EKLF binding site centered at -85 bp increased the expression by 26.8-fold and 6.5-fold (P < .05) in K562 and MEL cells, respectively. These results clearly demonstrate that the restoration of either an EKLF binding site or the CCAAT box can increase delta-globin gene expression, with potential future clinical benefit.

Adult↗

Hb Seal Rock [(alpha 2)142 term-->Glu, codon 142 TAA-->GAA]: an extended alpha chain variant associated with anemia, microcytosis, and alpha-thalassemia-2 (-3.7 Kb).

Hb Seal Rock was first reported in a young African-American women and her 2-year-old daughter (1). It is an extended alpha chain variant which, like Hb Constant Spring, is present in small quantity and is expressed as an alpha-thalassemia. The mutation, TAA-->GAA affects codon 142 of the alpha 2 gene. In this family, the index case was a compound heterozygote for Hb Seal Rock trait and for alpha-thalassemia trait (-3.7 kb). Her hematologic expression was similar to mild Hb H disease, presumably because the Seal Rock mutation affects the alpha 2 gene that is normally responsible for approximately 70% of alpha-globin synthesis. Her daughter had only Hb Seal Rock trait, but was phenotypically alpha-thalassemia-2 trait due to the expression of the Seal Rock mutation on one of her alpha 2-globin genes, the other three alpha-globin genes being unaffected.

Adult↗

Overview of pathophysiology and rationale for treatment of sickle cell anemia.

Sickle cell anemia occurs in individuals who are homozygous for a single nucleotide substitution in codon 6 of the beta-globin gene. This single mutation leads to the formation of abnormal hemoglobin, HbS (alpha2betas[s]2), which is much less soluble when deoxygenated than hemoglobin A (HbA) (alpha2beta2). This insolubility causes aggregates of HbS to form inside sickle erythrocytes as they traverse the circulation. With full deoxygenation, polymer becomes so extensive that the cells become sickled in shape. Yet, even with high oxygen saturation values, quantities of HbS polymer may be sufficient to alter the rheologic properties of sickle erythrocytes in the absence of morphologic changes, and cells can occlude end arterioles, leading to chronic hemolysis and microinfarction of diverse tissues. Ultimately, this process leads to vaso-occlusive crises and irreversible tissue damage. Nonetheless, the spectrum of disease severity even among patients with grossly equivalent hematologic indices suggests that many other factors-including genetic, cellular, physiologic, and psychosocial-play a substantial role in determining the course of this disorder. Of the genetic factors, the level of fetal hemoglobin in particular has been established to favorably modify the clinical manifestations of patients with sickle cell disease and related conditions. Recent advances in the understanding of the molecular and cellular pathophysiology of sickle cell disease, coupled with new insights into the developmental regulation of human globin gene expression, have provided the scientific impetus and clinical rationale to attempt to augment the postnatal production of fetal hemoglobin. Furthermore, contemporary understanding of the quantitative relationship between the extent of HbS polymerization within the red cells and the degree of red blood cell and/or organ pathology has now enabled investigators to predict to what extent this intracellular pathogenic process must be inhibited to achieve clinically significant amelioration of disease manifestation. These areas will be covered in this overview. This is a US government work. There are no restrictions on its use.

Anemia, Sickle Cell↗