PubMed Health⌕ Search

Biomedical subjects

R A Popp

Publications and source records attributed to R A Popp.

At least 37 records · Page 2Linked to original sources

Genetics of stomach and ocular alcohol dehydrogenase and aldehyde dehydrogenase in the mouse.

Activity variants of the stomach and ocular isozyme of aldehyde dehydrogenase (AHD-4) were observed among inbred strains of mice. The phenotypes were inherited in a normal mendelian fashion, with two alleles showing codominant expression at a single locus (Ahd-4). Linkage data indicated that Ahd-4 is localized on chromosome 11 near Hba (alpha hemoglobin locus), and segregated independently of Adh-3, encoding the stomach and ocular isozyme of alcohol dehydrogenase (ADH-C2).

Alcohol Dehydrogenase↗

Iron homeostasis in beta-thalassemic mice.

To explore the pathogenesis of nontransfusional iron overload in iron-loading anemia, we examined features of external iron exchange, internal iron kinetics, and tissue iron burden in adult mice with inherited gene-deletion beta-thalassemia. Mice homozygous for beta-thalassemia display moderate anemia, reticulocytosis, and shortened red cell survival, whereas heterozygous carriers appear hematologically normal. Quantitative iron determination revealed that iron content and concentration in liver, spleen, and kidney, but not heart, were far higher (P less than .01) in 15-to 35-week old homozygous thalassemic mice than in age-matched normal and heterozygous controls; of these tissues, iron content increased with age only in kidneys (P = .01) of homozygous affected mice. Although plasma iron levels were only minimally elevated in homozygotes, plasma iron turnover was threefold greater (P less than .001) than that seen in heterozygote controls. Nevertheless hyperabsorption of enteric radioiron, discernible among homozygous thalassemic mice as late as 6 to 8 weeks after birth, was not observed in older mice, additionally, thalassemic and control mice at 18 to 34 weeks showed comparable iron excretion after intravenous radioiron. We conclude that adult mice with beta-thalassemia regain balanced external iron exchange, despite substantial tissue iron excess and accelerated internal iron transit.

Animals↗

A 66-base pair insert bridges the deletion responsible for a mouse model of beta-thalassemia.

The breakpoints of the deletion responsible for the Hbb(th-1) mouse model of beta-thalassemia have been isolated. A 3709 (+/- 2)-base pair (bp) region, including the entire beta major globin gene and 2 kilobases of 5' flanking region, is deleted. A novel 66 (+/- 2)-bp sequence, ending in a stretch of 25 dA:dT base pairs, was found to bridge the deletion. A region of the normal murine genome, containing the first 43 bp of the deletion-associated insert (DAI), but lacking the 25-bp dA:dT sequence, was isolated. All normal mice tested contain this DAI-like element and several inbred strains contain an additional DAI-like element. The sequence spanning the Hbb(th-1) deletion may be a reverse transcript of this region.

Animals↗

Detection of an unstable murine hemoglobin.

3H-leucine was used in vitro to label newly synthesized adult alpha and beta globins in reticulocytes removed from normal (Hba-b/Hba-b;Hbb-s2/Hbb-s2 and alpha-thalassemic (Hba-b2(th)/Hba-b;Hbb-s2/Hbb-s2) mice. The ratio of synthesis of beta-s2major: beta-sminor globins was 71:29 in reticulocytes from normal mice and 55:45 in reticulocytes from alpha-thalassemic mice. The two beta-globins are structurally identical except for a Val----Glu substitution at position 60. Denaturation of these mouse hemoglobins in isopropanol indicated that the tetramer containing the beta-s2major globin is unstable.

1-Propanol↗

Independent expression of the two mouse adult beta-globin genes.

Dot blot hybridization was used to determine the relative amounts of the beta-major and beta-minor globin RNAs present in reticulocytes of mice at 14.5 and 17.5 days of gestation, newborns, and adults of the Hbab/Hbab;Hbbs2/Hbbs2 globin genotype. RNAs isolated from embryonic yolk sac, fetal liver, and adult reticulocytes were hybridized with the following labeled DNA probes: alpha-1, beta-minor specific, and beta-major specific. The level of beta-sminor RNA in reticulocytes at 14.5 and 17.5 days of gestation is nearly the same as in induced reticulocytes of adult mice. In contrast, the level of beta-s2major RNA in reticulocytes at 14.5 days of gestation is 0.23 X and at 17.5 days of gestation is 0.66 X the amount found in reticulocytes of adult mice. These results correlate well with earlier observations that the beta-sminor globin gene approaches its normal adult level of expression by 14.5 days of gestation, whereas the beta-s2major globin gene expression increases between 14.5 days of gestation and 6 days postnatally. They indicate that the differential expression of beta-sminor and beta-s2major globins during development is regulated at the level of transcription. Expression of the beta-minor globin gene in reticulocytes of adult normal mice is not maximal, however, because the levels of the beta-minor globin and its RNA are increased further in reticulocytes of thalassemic mice.

Aging↗

Interaction of H-2 genotype and basal serum immunoglobulin A level influences longevity.

The congenic pair of mice, C57BL/10 (B10) and C57BL/10.F (B10.F), differ at the H-2 locus and have mean ages at death of 706 and 456 days, respectively. B10.F also has reduced basal serum IgA levels compared with B10, 63 and 256 mg/dl, respectively. Controlled matings between the two strains of mice were used to identify genetic factors that govern longevity. F2 and backcross progeny from reciprocal F1 hybrids were classified for H-2 genotype and serum IgA levels and allowed to live out their lifespan. F2 and backcross progeny homozygous for the H-2 allele of B10.F had a mean age at death (602 days) significantly reduced from that of progeny homozygous for the H-2 allele of B10 (689 days). However, the greatest reduction of lifespan occurred among progeny of the (B10.F X B10)F1 mothers, 693 compared with 540 days. The strain of the maternal parent also has been shown to affect the segregation of IgA phenotypes. An increased incidence of low IgA phenotype associated with H-2 genotype was observed among progeny of (B10.F X B10)F1 mothers. Survival curves demonstrated a relationship between low serum IgA levels and shortened lifespan and no maternal effect was observed. The basis of the shortened lifespan among progeny of F1 hybrids in which the maternal parent was B10.F was the increased incidence of offspring with low IgA phenotypes. The apparent association of H-2 and shortened lifespan also was because the low IgA phenotype was more frequent among progeny that carried the H-2 allele of the B10.F strain. The B10.F mice spontaneously shed an endogenous ecotropic retrovirus which may be responsible for the maternal effect on immunoglobulin levels and lifespan.

Animals↗

Use of multiparameter analysis to quantitate hematological damage from exposure to a chemical (ethylene oxide).

This study was designed to test the value of a multiparameter approach in evaluating perturbations in bone marrow and peripheral blood elements of mice exposed to ethylene oxide (EtO). Mice exposed to 255 ppm EtO for 5 h/d were removed for analysis after 1, 2, 8, and 14 d (sequential exposure) and 4, 6, 8, and 10 wk (5 d/wk). Prior to sacrifice, blood was removed from the orbital sinus for blood cell counts, hemoglobin determination, and hematocrit. A blood film was made for differential leukocyte counts. Bone marrow was flushed from femurs and tibias and counted, and aliquot were used for stem-cell assay (CFU-S) or flow cytometry (FCM) analysis. One aliquot of marrow was stained with propidium iodide for cell-cycle analysis and another was reacted with fluorescein-conjugated monoclonal antibody for B-cell analysis. The preparations were analyzed for forward and 90 degrees scatter and fluorescence on an Ortho 50H cytofluorograph. Perturbations of peripheral leukocytes occurred after one exposure. After multiple exposures, hematocrit, red-cell number, and hemoglobin were generally depressed, with transient compensatory bursts, and bone marrow cellularity and CFU-S were below normal. However, white-cell numbers fluctuated dramatically during the exposure period. There was a shift in differential toward granulocytes, at times resulting in severely depressed numbers of lymphocytes in the peripheral blood. The FCM analysis showed an early depletion of granulocytes in the bone marrow followed by replacement and a relative lymphocyte deficit, especially pronounced at 10 wk. The B-cell changes reflected general lymphocyte perturbations. Shifts in numbers of cells in S and G/M were observed, consistent with a moderate bone marrow response to cell loss.

Animals↗

A second polymorphic lens crystallin (LEN-2) in the mouse: genetic and biochemical analysis of LEN-1 and LEN-2.

Two electrophoretic polymorphisms affecting lens crystallins, designated LEN-1 and LEN-2, have been discovered among inbred strains of mice. Analysis by isoelectric focusing demonstrated that both crystallins are monomeric proteins with isoelectric points at or above pH 7. Both proteins eluted in the low molecular weight (LM) fraction upon Sephadex G-200 gel filtration but LEN-2 was shown to be larger than LEN-1 by G75SF gel filtration and denaturing gel electrophoresis. Linkage analysis demonstrated that the genes encoding LEN-1 and LEN-2 assort independently. Amino acid analysis of the allelic products of the two genes revealed that genetic variants of each respective crystallin were very similar in amino acid compositions but that LEN-1 and LEN-2 were dissimilar crystallins.

Alleles↗

Use of a new mouse beta-globin haplotype (Hbbs2) to study hemoglobin expression during development.

Mice of the mutant haplotype (Hbbs2) produce a variant beta-s globin (beta-s2major) which can be distinguished from beta-smajor and beta-sminor by cellulose acetate electrophoresis and ion exchange chromatography. Mice homozygous for this mutation were used to study the relative quantities of the mutant beta-s2major and normal beta-sminor globins specified by the two adult beta-globin genes of the Hbbs2 haplotype during development. At 11.5 days of gestation, beta-s2major comprises under 20% and beta-sminor over 80% of the adult beta-globin. The relative level of beta-sminor decreases through fetal development; at birth beta-sminor represents 33.7% of the beta-globin. The adult value of 71.0% beta-s2major and 29.0% beta-sminor globin is expressed in mice 6 days after birth. In mildly anemia alpha-thalassemic heterozygotes (Hbab2(th)/Hbab;Hbbs2/Hbbs2) the level of beta-sminor globin increases from 29.0 to 37.9%, but beta-sminor is elevated only slightly (29.0 to 33.9%) in asymptomatic beta-thalassemic heterozygotes (Hbab/Hbab;Hbbd3(th)Hbbs2). The relative quantity of beta-sminor is increased significantly (29.0 to 41.4%) in doubly heterozygous alpha-thalassemic, beta-thalassemic mice (Hbab2(th)/Hbab;Hbbd3(th)/Hbbs2). The relative levels of expression of the beta 1s2major and beta 2sminor globin genes of Hbbs2/Hbbs2 mice correlates well with the expression of the beta 1dmajor and beta 2dminor globin genes of Hbbd/Hbbd mice during development and in response to hematological stress caused by thalassemia. Expression of the beta 1sminor globin gene should not have been affected by the ENU-induced base substitution in the beta 1smajor gene. Therefore, we propose that the beta 1sminor gene is also expressed in mice of the Hbbs haplotype. The results also indicated that the two adult beta-globin genes of the Hbbs2 and, presumably, of the Hbbs haplotypes are regulated independently as are the beta 1dmajor and beta 2dminor genes of the Hbbd and Hbbp haplotypes.

Animals↗

A mutation in the beta-globin gene detected in the progeny of a female mouse treated with ethylnitrosourea.

A mouse with a variant hemoglobin was discovered during electrophoretic screening of (C57BL/6J X DBA/2J)F1 progeny of females treated with ethylnitrosourea. The variant trait was transmitted as a simple Mendelian alternate at the Hbb locus in all crosses except those involving the original carrier of the mutation. The proband mouse which received the mutation directly from the mutagen-treated parent was a germinal mosaic for the mutant and normal Hbbs alleles. The mutant allele was designated Hbbs2. The mutant haplotype specifies both an electrophoretically fast hemoglobin band and a hemoglobin band in the normal beta single hemoglobin position. Thus, the mutation has altered one of the tandemly duplicated genes at the Hbbs locus. A comparison of the relative concentrations of the two hemoglobins in Hbbs2 mice demonstrates preferential expression of the mutant gene, possibly analogous to the enhanced expression of Hbbdmaj in the Hbbd haplotype. Analysis of the amino acid sequence of the variant beta-globin revealed that the valine at position 60 was changed to glutamic acid. The simplest mutation mechanism for such an alteration is an A X T----T X A transversion.

Animals↗

Detection of neutral amino acid substitutions in proteins.

The field of biochemical genetics relies heavily upon the detection by electrophoresis of genetically determined variants of proteins. Most of these variants differ by substitutions that involve charged amino acids. Genetic variants of another large class, ones that involve substitutions among neutral amino acids, are not easily detected and are often ignored. Ampholyte isoelectric focusing in some cases can separate proteins indistinguishable by standard electrophoresis, including genetic variants of mouse hemoglobins that differ only by neutral amino acid substitutions. A revolutionary variation of isoelectric focusing, in which gradients covering a small pH range are fixed into place in a polyacrylamide gel, provides greater resolution of these nearly identical proteins. Mouse hemoglobin tetramers that differ only by the substitution of alanine for glycine in the alpha-globin chains are resolved by several millimeters with the new technique; by comparison, these tetramers are imperfectly resolved on a standard pH 7-9 isoelectric focusing gel. This improved technique of isoelectric focusing was used to identify a variety of previously unreported genetic variants of mouse hemoglobin alpha chains. Immobilized gradients tailored to the requirements of the proteins being analyzed will extend greatly the ranges of protein variations that can be easily recognized for diverse applications, including genetic quality-control analyses and in studies of genetics, mutagenesis, and evolution.

Amino Acid Sequence↗

Hematology of a murine beta-thalassemia: a longitudinal study.

Mice homozygous for a spontaneous mutation, in which the beta-major globin gene is deleted, have clinical symptoms of beta-thalassemia. These mice have a hypocellular, hypochromic, microcytic anemia that becomes more severe with increasing age. The defective red cell morphology, decreased osmotic fragility of erythrocytes and shortened red cell life span found in beta-thalassemic mice are similar to those observed in human beta-thalassemia. Synthesis of beta-globin is depressed but not as much as might be expected because the expression of the beta-minor globin gene is enhanced to encode two to three times more globin than in normal mice. Splenomegaly, an enlarged pool of stem cells for erythropoiesis, and iron overloading occur in older mice. The fact that these mice remain moderately healthy makes them a very suitable animal model in which to develop and test alternative techniques of gene therapy that could be successfully applied to the treatment of human thalassemia. Homozygous beta-thalassemic mice have large deposits of iron in their tissues, which might make these mice also useful for in vivo tests of the effectiveness and possible long-term side effects of newly developed iron chelators.

Animals↗

Differential expression of murine adult hemoglobins in early ontogeny.

Mice with a mutation at the Hbbs, beta-globin locus, were used to study the relative levels of beta-s2major (mutant) and beta-sminor globins specified by the mutant Hbbs2 haplotype during development. At 11.5 days of gestation, beta-sminor comprised over 80 percent and beta-s2major under 20 percent of the adult beta-globin. The relative level of beta-sminor decreased through fetal development; at birth beta-sminor represented 33.7 percent of the beta-globin. The adult values of 29.0 percent beta-sminor and 71.0 percent beta-s2major globin are expressed in mice six days after birth. Because the two beta-globin genes are expressed in mice of the Hbbs2 haplotype, both the beta-smajor and beta-sminor genes are presumably expressed in mice of the Hbbs haplotype. Expression of the beta-sminor gene is elevated to 35.6 percent in adult Hbbs2/Hbbs2 mice that have been bled repeatedly. Thus, the 5' beta-s2major and 3' beta-sminor genes of the Hbbs2 haplotype and, presumably the 5' beta-smajor and 3' beta-sminor genes of the Hbbs haplotype, are regulated independently and are homologous to the 5' beta-dmajor and 3' beta-dminor genes of the Hbbd haplotype. Mice of the Hbbs2 haplotype are better suited than mice of the Hbbd haplotype for studying the mechanisms of hemoglobin switching because with Hbbs2 each of the three embryonic and two adult hemoglobins can be separated by electrophoresis.

Animals↗

Spontaneous iron overload in alpha-thalassemic mice.

Because clinical disorders of spontaneous iron overload have no experimental counterpart, we studied iron distribution (atomic absorption analysis) and intestinal absorption (59Fe) in mice with hereditary alpha-thalassemia. Mice heterozygous for a radiation-induced alpha-Hb gene deletion exhibit a mild hemolytic anemia, like the human condition, with microcytosis, reticulocytosis, splenomegaly, and chemical evidence of defective alpha-chain synthesis. Quantitative iron determination showed that total iron content in spleen, liver, and kidney, but not heart or lung, of adult alpha-thalassemic mice was greater (P less than .05) than that in unaffected littermates. Iron concentration was also increased in liver (P less than .001), spleen (P = .025), kidney (P = .058), and heart (P = .010); in general, the greater the iron concentration in liver, the greater that in spleen (r = .39, P = .009), kidney (r = .70, P less than .001), and heart (r = .46, P less than .001). In mice examined 8 months postoperatively, splenectomy, as compared to sham operation, significantly raised iron content in extrasplenic tissues, but did not affect total body iron. At 10-11 weeks of age, but no longer at 12-14 weeks, thalassemic mice showed higher rates of iron absorption than age-matched controls. Thus, alpha-thalassemic mice display an early occurring iron absorption defect, leading to a modest, sustained, nonprogressive iron overload, and thereby represent a valuable model for exploring disorders of iron homeostasis.

Animals↗

A mouse model for beta-thalassemia.

A mutation that produces an absolute deficiency of normal beta-major globin polypeptides has been recovered from a DBA/2J male mouse. Most mice homozygous for the deficiency survived to adulthood and reproduced but were smaller at birth than their littermates and demonstrated a hypochromic, microcytic anemia with severe anisocytosis, poikilocytosis, and reticulocytosis and the presence of inclusion bodies in a high proportion of circulating erythrocytes. Mice heterozygous for the deficiency demonstrated a mild reticulocytosis but were not clinically anemic. Analysis of globin chain synthesis in vitro by 3H-leucine incorporation revealed that beta-globin synthesis was nearly normal (95%) in heterozygotes and about 75% of normal in deficiency homozygotes. Molecular characterization of the mutation by restriction analysis revealed a deletion of about 3.3 kb of DNA, including regulatory sequences and all coding blocks for beta-major globin. Based on genetic and hematological criteria, mice homozygous for the mutant allele, designated Hbbth-1, represent the first animal model of beta-thalassemia (Cooley's anemia), a severe genetic disease of humans.

Animals↗

Analysis of a mouse alpha-globin gene mutation induced by ethylnitrosourea.

A DBA/2 mouse treated with ethylnitrosourea sired an offspring whose hemoglobin showed an extra band following starch gel electrophoresis. The variant hemoglobin migrated to a more cathodal position in starch gel. Isoelectric focusing indicated that chain 5 of the mutant hemoglobin migrated to a more cathodal position than the normal chain 5 from DBA/2 mice and that the other alpha-globin, chain 1, was not affected. On focusing gels the phenotype of the mutant allele, Hbay9, was expressed without dominance to normal chain 5, and Hbay9/Hbay9 homozygotes were fully viable in the laboratory. The molecular basis for the germinal mutation was investigated by analyzing the amino acid sequence of chain 5y9, the mutant form of alpha-chain 5. A single amino acid substitution (His leads to Leu) at position 89 was found in chain 5y9. We propose that ethylnitrosourea induced an A leads to T transversion in the histidine codon at position 89 (CAC leads to CTC). This mutation has apparently not been observed previously in humans, mice or other mammals, and its novel occurrence may be indicative of other unusual mutational events that do not ordinarily occur in the absence of specific mutagen exposure.

Amino Acid Sequence↗

The primary structure of genetic variants of mouse hemoglobin.

The primary structures of the alpha globins from CE/J, DBA/2J, and a stock of Potter's mice were determined to identify the amino acid substitutions associated with the unique isoelectric focusing patterns of these hemoglobins. In addition, the primary structures of the alpha globins from MOL III and PERU mice were studied in search of amino acid substitutions that may not be detected by isoelectric focusing. CE/J hemoglobin contains a unique kind of alpha globin called chain 5. It differs from the single kind of alpha globin (chain 1) in C57BL/6 by having alanine rather than glycine at position 78. DBA/2J hemoglobin has two kinds of alpha globins: one half is like chain 5 and the other half is like chain 1. The hemoglobin from Potter's stock of Mus musculus molossinus also contains chains 1 and 5, but they are expressed at different levels i.e., 80% chain 1 and 20% chain 5. MOL III hemoglobin has a single kind of a alpha globin identical to that in C57BL/6, and PERU hemoglobin contains approximately 40% chain 1 and 60% chain 4. Chains 1 and 4 have different amino acids at positions 25, 62 and 68. These studies confirm that mouse hemoglobins separable by isoelectric focusing, but not by other means of electrophoresis, have substitutions of neutrally charged amino acids in their alpha chains.

Amino Acid Sequence↗