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R R Behringer

Publications and source records attributed to R R Behringer.

119 records · Page 7Linked to original sources

Heart and bone tumors in transgenic mice.

Tissue-specific tumorigenesis can be induced in transgenic mice by the directed expression of simian virus 40 (SV40) large tumor (T) antigen. In an attempt to determine the susceptibility of haploid, round spermatids to neoplastic transformation by this oncogene, transgenic mice were generated that harbored a chimeric gene composed of the SV40 T-antigen genes fused to the 5' and 3' flanking sequences of the mouse protamine 1 gene. The transgene was expressed in round spermatids and, surprisingly, in the heart and temporal bone as well. Expression in the heart resulted in rhabdomyosarcomas that always appeared in the right atrium. Bilateral osteosarcomas developed within the petrous portion of the temporal bone. No testicular pathology was observed. T-antigen immunostaining was readily detected in tumor tissue but not in the testis. In addition, SV40 transcripts were processed differently in testis and tumor tissue. Transgenic mouse lines were established that routinely develop these tumors, and they should provide a valuable resource for studies involving cardiac and bone physiology and neoplasia. The atrial tumor cells can be maintained in vitro and some continue to display a cardiac muscle phenotype.

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Dwarf mice produced by genetic ablation of growth hormone-expressing cells.

Fusion of the 310 bp located 5' of the rat growth hormone (GH) gene to the human GH structural gene resulted in somatotrope-specific expression in transgenic mice. Human GH transcripts were detected only in pituitaries of these mice, and immunocytochemical analyses revealed that this expression was limited to GH-expressing cell types. The rat GH 5' sequences were then used to direct the expression of diphtheria toxin to the GH-expressing cells of transgenic mice. A line of mice was established which lacks detectable levels of circulating GH. This deficiency resulted in dwarfism; transgenic animals grew only to half the size of nontransgenic littermates. Nearly all somatotropes were absent, as shown by GH immunostaining in the transgenic pituitaries. Prolactin (PRL)-producing lactotropes, thought to share a common cellular origin with somatotropes, were also reduced in numbers. A model for the lineal relationships between GH- and PRL-synthesizing cells is proposed.

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Growth enhancement of transgenic mice expressing human insulin-like growth factor I.

A line of transgenic mice carrying a chimeric gene composed of human insulin-like growth factor I (IGF-I) coding sequences fused to the mouse metallothionein I promoter was generated to study the effects of chronically elevated exposure to IGF-I. Mice in this line overexpress IGF-I in most tissues studied and have circulating IGF-I levels 1.5 times the normal value. This results in a growth response manifested by a 1.3-fold increase in weight as a result of selective organomegaly without an apparent increase in skeletal growth. In addition, expression of the endogenous GH and IGF-I genes is inhibited. These results are consistent with IGF-I playing an important role in the control of somatic growth.

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Cell lineage ablation in transgenic mice by cell-specific expression of a toxin gene.

A method of deleting specific cell lineages has been developed that entails microinjection into fertilized eggs of a chimeric gene in which a cell-specific enhancer/promoter is used to drive the expression of a toxic gene product. We show that microinjection of a construct in which the elastase I promoter/enhancer is fused to a gene for diphtheria toxin A polypeptide results in birth of mice lacking a normal pancreas because of expression of the toxin in pancreatic acinar cells. A small pancreatic rudiment, containing islet and duct-like cells, was observed in some of the transgenic mice. This method provides a new approach for studying cell-lineage relationships and for analyzing cellular interactions during development.

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Spermatid-specific expression of protamine 1 in transgenic mice.

Protamines are abundant basic proteins involved in the condensation of sperm chromatin. In the mouse, protamine genes are transcribed postmeiotically in round spermatids. We have cloned and sequenced the mouse protamine 1 gene. Ten lines of transgenic mice harboring marked protamine 1 sequences were generated by microinjection of fertilized eggs. Transcription of the transgene is restricted to round spermatids and in several cases exceeds that of the endogenous gene. The cis-acting sequences required for tissue-specific protamine expression reside on a 2.4-kilobase restriction fragment. Prospects for using transgenic mice to address fundamental questions of male germ-cell development are discussed.

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Two 3' sequences direct adult erythroid-specific expression of human beta-globin genes in transgenic mice.

Previous experiments have demonstrated that the human beta-globin gene is correctly regulated in transgenic mice. The beta-globin gene is not expressed in yolk sac-derived erythroid cells in early embryonic development but is expressed concomitantly with the adult mouse beta-globin genes in 14- to 16-day fetal liver and adult reticulocytes. In an attempt to localize sequences that direct erythroid-specific expression, fragments of the human beta-globin gene were inserted in the opposite orientation 200 base pairs (bp) upstream of an intact human A gamma marker gene, which is not expressed on its own in mouse fetal liver. In the experiments reported here, two beta-globin 3' sequences activated the marker gene specifically in fetal liver. One sequence is located in a 250-bp Pst I fragment 550-800 bp downstream from the poly(A) site; the other is located near an EcoRI site in the third exon. These two sequences are active individually, and their combined effect is greater than their effects alone. beta-Globin 5' sequences from -815 to -50 were also analyzed for activity in this assay. The 5' sequences did not activate the marker gene when tested alone but did stimulate expression that was already directed to adult erythroid tissue by the two 3' sequences. These results suggest that three separate sequences are involved in human beta-globin gene regulation. The two 3' sequences act as adult erythroid enhancers and the 5' sequence stimulates expression that is already determined to be erythroid specific.

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Erythroid cell fusion in the early phase of Friend virus leukemogenesis.

Infection of susceptible strain mice with the oncogenic Friend erythroleukemia virus initially results in fulminant erythroid hyperplasia. Several weeks later a frank erythroid leukemia develops. At the earliest stages of Friend disease there is extensive cell fusion involving erythroid cells but not platelets and granulocytes. Fusion was detected in experiments with allophenic (chimeric) mice whose component strains express electrophoretically distinct forms of the dimeric enzyme glucose phosphate isomerase (GPI). Infection of such animals with the polycythemic strain of Friend virus resulted in the rapid development of Friend disease. Concomitant with the appearance of early disease symptoms was the appearance in the red cells of the heterodimeric form of GPI, an unequivocal consequence of cell fusion. Platelet and granulocyte samples from the same infected animals failed to exhibit the hybrid GPI form. Furthermore, no hybrid dimer was evident in red cells from chimeric mice in which blood formation had been stimulated by phenylhydrazine treatment. These observations suggest that the occurrence of cell fusion early after infection by Friend virus is a significant aspect in the rapid development of neoplastic disease.

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Cellular site and mode of Fv-2 gene action.

The Fv-2 genotype of erythroid progenitors directly determines whether they will undergo viral-induced transformation. This conclusion was reached from studies of allophenic mice compounded from congenic C57BL/6 strains differing at Fv-2 and an enzyme marker (GPI). Infection of these Fv-2ss in equilibrium Fv-2rr mosaic animals with the polycythemic strain of Friend virus results in the development of Friend disease. Concomitant with disease symptoms is a shift in the mosaic composition of the erythrocytes in favor of those of the susceptible strain. The observed viral-induced shift in the erythrocyte composition is paralleled by a similar change in the mosaic composition of the CFU-E pool but not the primitive (d8) BFU-E pool. Thus, with regard to this particular Fv-2 phenotype (susceptibility to FV-P-induced cellular hyperplasia), Fv-2 manifests itself specifically in the erythroid lineage, either in mature (d3) BFU-E or CFU-E.

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Stable genotypic composition of blood cells in allophenic mice derived from congenic C57BL/6 strains.

Random shifts in blood cell genotypic composition are commonly observed in allophenic mice. This phenomenon was studied in 16 mosaic mice produced from very closely related strains, and no such changes were observed in the mosaic composition of erythrocytes, platelets, and lymphocytes over a period of 14 weeks. Furthermore, the mosaic distribution of a large group (66) of these mosaic mice was markedly biased in favor of those animals containing major contributions of both strains. This contrasts with what is normally found in collections of allophenic mice, in which the mosaic distribution curves are usually much flatter. While most allophenic mice have been produced from inbred strains with many genetic differences our results were obtained with congenic strains. This suggests that both properties, the unstable mosaic composition of blood cells and the flat mosaic distribution curves, are caused by specific genetic differences between cells of the two strains and are not inherent properties of allophenic mice. We propose that genetic differences cause these phenomena by inhibiting the mixing of cells of the two strains. Such might occur for example if, throughout development, cells of the same H-2 haplotype had greater affinity for each other than for ones of disparate H-2 haplotypes.

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Genetic control of hematopoietic kinetics revealed by analyses of allophenic mice and stem cell suicide.

The pluripotential hematopoietic stem cell is influenced by at least one gene that differs between DBA/2 and C3H/He, and C57BL/6 inbred mouse strains. This gene(s) manifests itself by its effect on susceptibility to killing of spleen colony forming cells (CFU-S) caused by hydroxyurea (HU). In strains DBA/2 and C3H/He 20% of the CFU-S population is normally in S phase whereas practically none from strain C57BL/6 are synthesizing DNA. On the other hand, in C57BL/6 in equilibrium DBA/2 allophenic mice we observed that the proportion of DBA/2 erythrocytes was higher than the proportion of DBA/2 lymphocytes; the fraction of platelets and neutrophils with the DBA/2 genotype fell between the values for erythrocytes and lymphocytes. Control experiments using mice congenic at the Fv-2 locus confirm that in both situations we are examining effects of a gene(s) other than Fv-2. For the effect on the S phase fraction of CFU-S, we refer to the gene(s) as Stk (stem cell kinetics). We suggest that the observed skewing in composition among the various mature blood cell types in C57BL/6 in equilibrium DBA/2 allophenic mice is caused by allelic variants of the Stk gene. Such variation would favor the formation of DBA/2 erythrocytes, platelets, and neutrophils over those of the C57BL/6 genotype.

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