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T Magnuson

Publications and source records attributed to T Magnuson.

At least 55 records · Page 3Linked to original sources

Targeted mutagenesis of a candidate t complex responder gene in mouse t haplotypes does not eliminate transmission ratio distortion.

Transmission ratio distortion (TRI) associated with mouse t haplotypes causes +/t males to transmit the t-bearing chromosome to nearly all their offspring. Of the several genes involved in this phenomenon, the t complex responder (Tcrt) locus is absolutely essential for TRD to occur. A candidate Tcrt gene called Tcp10bt was previously cloned from the genetically defined Tcrt region. Its location, restricted expression in testis, and a unique postmeiotic alternative splicing pattern supported the idea that Tcp10bt was Tcrt. To test this hypothesis in a functional assay, ES cells were derived from a viable partial t haplotype, and the Tcp10bt gene was mutated by homologous recombination. Mutant mice were mated to appropriate partial t haplotypes to determine whether the targeted chromosome exhibited transmission ratios characteristic of the responder. The results demonstrated that the targeted chromosome retained full responder activity. Hence, Tcp10bt does not appear to be Tcrt. These and other observations necessitate a reevaluation of genetic mapping data and the actual nature of the responder.

Animals↗

Differential expression of the full-length and truncated forms of the epidermal growth factor receptor in the preimplantation mouse uterus and blastocyst.

The present investigation examined the differential expression of the full-length (fl) and the truncated (tr) forms of the epidermal growth factor receptor (EGFr) in the preimplantation mouse uterus and blastocyst. Northern blot hybridization using a complementary RNA probe specific to the full-length form (EGFr-fl) detected a 6.5-kb transcript, whereas that of the truncated form (EGFr-tr) detected a 2.7-kb transcript in the preimplantation mouse uterus on days 1 and 4 of pregnancy (day 1 = vaginal plug). In situ hybridization using these probes detected the EGFr-fl transcripts only in the stroma and myometrium, but not in the epithelium, whereas EGFr-tr transcripts were detected in all major uterine cell-types. To confirm the results of in situ hybridization, RT-PCR was performed on RNA isolated from separated uterine cell-types on day 4 of pregnancy using sequence specific primers for the two forms of the receptor. The results concur that the EGFr-tr transcript is expressed in the epithelium, stroma and myometrium, whereas that of the EGFr-fl transcript is not expressed in the epithelium. In the preimplantation blastocyst, RT-PCR detected the EGFr-fl messenger RNA, but not the EGFr-tr messenger RNA. These results suggest that the blastocyst, not the uterine epithelium, is the target for EGF family of growth factors in embryo-uterine interaction during implantation.

Animals↗

MesP1: a novel basic helix-loop-helix protein expressed in the nascent mesodermal cells during mouse gastrulation.

A subtractive hybridization strategy was used to isolate putative genes involved in the development of mouse primordial germ cells (PGC). Complimentary DNA was amplified on RNA isolated from the base of the allantois where PGC are located in the 7.5 days post coitum (dpc) mouse embryo. It was then subtracted by hybridization with cDNA amplified on RNA of the anterior region where PGC are absent. A novel gene thus isolated is designated as Mesp1 and encodes a possible transcription factor MesP1 containing a basic helix-loop-helix motif. Its earliest expression was observed at the onset of gastrulation, as early as 6.5 dpc, in the nascent mesodermal cells that first ingressed at the end of the primitive streak. These expressing cells in the lateral and extraembryonic mesoderm showed a wing-shaped distribution. Its initial expression was soon down-regulated at 7.5 dpc before the completion of gastrulation, except at the proximal end of the primitive streak which included the extraembryonic mesoderm and the base of allantois. At 8 dpc, the expression at the base of the allantois moved laterally. This distribution between 7.0 and 8.0 dpc was similar to that of PGC detected by the alkaline phosphatase activity. However, the expression of Mesp1 was down-regulated thereafter, when PGC entered in the migration stage. After birth, Mesp1 expression was detected only in mature testes, but in a different isoform from that expressed in the embryo. Mesp1 was mapped to the mid region of chromosome 7, near the mesodermal deficiency gene (mesd). However, a Southern hybridization study clearly showed that Mesp1 was distinctly different from mesd. The amino acid sequence and its expression pattern suggest that MesP1 plays an important role in the development of the nascent mesoderm including PGC.

Amino Acid Sequence↗

Choledocholithiasis: evaluation with MR cholangiography.

OBJECTIVE: We performed this study to evaluate the usefulness of a new T2-weighted MR sequence using a half-Fourier acquisition single-shot turbo spin-echo (HASTE) technique in the diagnosis of bile duct stones. SUBJECTS AND METHODS: We prospectively evaluated 23 patients with suspected bile duct calculi using HASTE MR cholangiography and compared that imaging technique with endoscopic retrograde cholangiography and sonography. The study group consisted of 15 women and eight men who were 42-89 years old. Patients were imaged in the axial, coronal, and sagittal planes with a 1.5-T MR scanner using a body coil. Acquisitions of 13 sec each allowed images to be obtained in a single breath-hold. All images were interpreted by two radiologists in a double-blinded fashion. The presence, number, and size of stones were noted, and common bile duct dilatation was assessed. RESULTS: Fifteen of the 23 patients were proven to have common bile duct stones. Stone size ranged from 3 mm to 35 mm (mean, 11 mm). HASTE MR cholangiography revealed stones in 14 (93%) of 15 patients; sonography revealed stones in nine (60%) of 15 patients. In 12 patients, the common bile duct was dilated, as shown by endoscopic retrograde cholangiography, HASTE MR cholangiography, and sonography. On HASTE MR cholangiograms, we measured the diameter of the bile duct in all patients. The mean diameter was 11 mm, which correlated well (r = .82) with a mean diameter of 13.5 mm as measured on endoscopic retrograde cholangiograms. CONCLUSION: HASTE MR cholangiography can noninvasively and rapidly reveal the presence of stones in the common bile duct and allows readers to assess the degree of biliary dilatation. The sequence should be considered as an alternative to endoscopic retrograde cholangiography in patients with clinical evidence of bile duct calculi and in those for whom endoscopic retrograde cholangiography is impossible.

Adult↗

Physical localization of eed: a region of mouse chromosome 7 required for gastrulation.

In the mouse, the embryonic ectoderm development (eed) region is defined by deletions encompassing the albino (c) locus of chromosome 7. The region is located 1-2 cM distal to the c locus and was of undetermined size. Embryos homozygous for deletions removing eed display defects in axial organization during gastrulation. Two loci, identified by chemical mutagenesis, are known to map within the eed interval. One, l7Rn5, probably represents the gene required for gastrulation. The second, l7Rn6, is required for survival after birth. fit1, a third locus identified by chemical mutagenesis, maps distal to the eed interval and is also required for survival after birth. A 900-kb YAC contig has been constructed, and deletion breakpoints defining the limits of the regions containing these loci have been localized. Their positions place the eed region within a maximum 150-kb interval at the proximal end of the contig, while fit1 maps to a 360-kb interval within the middle of the contig. Several clusters of rare-cutting restriction sites map within these regions and represent potential locations of candidate genes.

Animals↗

Is there a Brachyury the Second? Analysis of a transgenic mutation involved in notochord maintenance in mice.

A new phenotype mapping to the t-complex, which is designated Brachyury the Second (T2), is characterized by a slightly shortened tail in heterozygotes and homozygous failure to form an organized notochord with subsequent abnormal development of posterior somites and neural tube. The phenotype of T2 superficially resembles that of Brachyury; however, there are several important differences. Brachyury homozygotes fail to make posterior somites, notochord, floor plate, and a placental connection, resulting in death by 10.5 days of development. In contrast, T2 homozygotes make posterior somites, scattered notochord cells, and floorplate and achieve an allantoic connection. However, despite making a maternal connection, T2 homozygotes cease development at E11.5 and die soon after. We have cloned and analyzed the transgene insertion site, which maps within 100 kb of the Brachyury gene, but does not seem to physically interrupt nor affect transcription from that locus. The existence of a second gene mapping near Brachyury and affecting the same developmental processes was alluded to over 50 years ago and has been debated ever since. An embryological description of T2 is presented, as is a discussion of the implications of a single, larger Brachyury locus versus two closely linked genes coordinately regulating axial development.

Animals↗

Expression of rabbit C-reactive protein in transgenic mice.

C-reactive protein (CRP) is a prototypic acute phase reactant in humans and rabbits whose serum concentration can increase up to 1000-fold following an acute inflammatory stimulus. CRP binds to many phosphate ester-containing compounds including phosphorylcholine, nucleotides, chromatin and snRNP. To examine the in vivo function of this protein, we produced transgenic mice capable of significant CRP synthesis. In contrast to most other vertebrates, mice synthesize CRP in only trace amounts. The transgenic animals express rabbit CRP from either the phosphoenolpyruvate carboxykinase promoter (PEPCK-CRP) or the mouse metallothionein I promoter (MT-CRP). Manipulating the diet in one of the PEPCK-CRP lines led to a rise in serum CRP levels from < 5 mu g/mL to 100-200 mu g/mL over a period of 2 days. The two MT-CRP lines examined expressed CRP constitutively which could be further elevated 2-4-fold following an inflammatory stimulus. Transgenic CRP bound phosphorylcholine was pentameric, had a circulating half-life of 30-60 min and was capable of activating mouse complement when bound to a ligand. We conclude that these transgenic lines express CRP with many of the properties of authentic rabbit CRP, and that the expression of CRP can be controlled to be dependent or independent of the acute phase response.

Acute-Phase Reaction↗

The eed mutation disrupts anterior mesoderm production in mice.

Mouse embryos homozygous for the mutation embryonic ectoderm development (eed) exhibit a growth defect and fail to gastrulate normally. While extraembryonic mesoderm is produced extensively, very little embryonic mesoderm is detected in eed mutant embryos, and there is no subsequent organization of mesoderm into node, notochord, or somites. The phenotype is consistent with a defect in the distal primitive streak. Here we report additional phenotypic analyses that include mRNA in situ hybridization of genes whose expression reflects the function of different regions of the primitive streak and their derivatives. These studies have confirmed that mesoderm derived from the proximal primitive streak is specified appropriately. Despite the absence of a morphologically distinct node, sparse axial mesoderm cells in eed mutant embryos are specified, as reflected by expression of Brachyury (T), Sonic hedgehog, and Tcf3b/HNF-3 beta, and definitive endoderm is produced. Specification of these cell types is also independent of correct expression of nodal, Fgf4, and gsc. Finally, T and Evx1 display ectopic expression in cells not normally fated to ingress through the primitive streak. The data presented are discussed in terms of mechanisms for establishment of the eed phenotype, and are consistent with the eed gene product playing an early role in primitive streak formation and/or organization.

Animals↗

Strain-specific transgene methylation occurs early in mouse development and can be recapitulated in embryonic stem cells.

A murine transgene, HRD, is methylated only when carried in certain inbred strain backgrounds. A locus on distal chromosome 4, Ssm1 (strain-specific modifier), controls this phenomenon. In order to characterize the activity of Ssm1, we have investigated developmental acquisition of methylation over the transgene. Analysis of postimplantation embryos revealed that strain-specific methylation is initiated prior to embryonic day (E) 6.5. Strain-specific transgene methylation is all-or-none in pattern and occurs exclusively in the primitive ectoderm lineage. A strain-independent pattern of partial methylation occurs in the primitive endoderm and trophectoderm lineages. To examine earlier stages, embryonic stem (ES) cells were derived from E3.5 blastocysts and examined for transgene methylation before and after differentiation. Though the transgene had already acquired some methylation in undifferentiated ES cells, differentiation induced further, de novo methylation in a strain-dependent manner. Analysis of methylation in ES cultures suggests that the transgene and endogenous genes (such as immunoglobulin genes) are synchronously methylated during early development. These results are interpreted in the context of a model in which Ssm1-like modifier genes produce alterations in chromatin structure during and/or shortly after implantation, thereby marking target loci for de novo methylation with the rest of the genome during gastrulation.

Animals↗

N-CAM mutation inhibits tangential neuronal migration and is phenocopied by enzymatic removal of polysialic acid.

The mutation of N-CAM in mice produces a phenotype dominated by an undersized olfactory bulb and accumulation of precursors in the subependymal layer. We demonstrate here that this defect can be duplicated by injection of an enzyme that specifically destroys the polysialic acid (PSA) moiety associated with N-CAM. Studies of BrdU-labeled and pyknotic cells suggest that this defect reflects a decrease in the rostral migration of olfactory precursors and not a change in the proliferation or rate of death of these cells. In addition to their ectopic location, these cells had fewer growth cone-like processes oriented along the migration route. In contrast to tangential movement, radial migration of granule cells in the olfactory bulb was not affected by loss of PSA. These results support the proposed role for PSA in cell translocation, discriminate between different mechanisms of cell migration, and provide insight as to the nature of the N-CAM mutant phenotype.

Animals↗

Comparative embryonic cytotoxicity of antiretroviral nucleosides.

Previous experiments have indicated that zidovudine is cytotoxic to early murine embryos both in vivo and in vitro. Newer nucleoside analogs (ddI, ddC, and d4T) with antiretroviral activity were tested to determine whether they had similar toxicity. Exposure of two-cell embryos to each of these three drugs inhibited blastocyst formation only at concentrations > or = to 100 microM. Sublethal preblastocyst exposure to d4T resulted in failure to develop beyond the blastocyst stage at 10 microM; no effect was seen with ddC or ddI at concentrations up to 100 microM. In each instance, however, cytotoxicity of all three drugs was significantly less than with zidovudine at equivalent concentration. These experiments suggest that newer antiretroviral nucleosides may be safer to use in early pregnancy than zidovudine.

Animals↗