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Biomedical subjects

P Hoppe

Publications and source records attributed to P Hoppe.

At least 19 recordsLinked to original sources

The vegetalizing factor. A member of the evolutionarily highly conserved activin family.

The mesoderm and endoderm inducing vegetalizing factor was partially sequenced after BrCN cleavage. A sequence which is highly conserved in activin A near the C-terminal end was identified. This shows that the factor belongs to the activin family. The activins are not confined to embryos and gonads, but widely distributed in other tissues like calf kidney and calf liver. Functional aspects are discussed.

Activins

Spatial restriction of AChR gene expression to subsynaptic nuclei.

Acetylcholine receptors (AChRs) and the mRNAs encoding the four AChR subunits are highly concentrated in the synaptic region of skeletal myofibers. The initial localization of AChRs to synaptic sites is triggered by the nerve and is caused, in part, by post-translational mechanisms that involve a redistribution of AChR protein in the myotube membrane. We have used transgenic mice that harbor a gene fusion between the murine AChR delta subunit gene and the human growth hormone gene to show that innervation also activates two independent transcriptional pathways that are important for establishing and maintaining this non-uniform distribution of AChR mRNA and protein. One pathway is triggered by signal(s) that are associated with myofiber depolarization, and these signals act to repress delta subunit gene expression in nuclei throughout the myofiber. Denervation of muscle removes this repression and causes activation of delta subunit gene expression in nuclei in non-synaptic regions of the myofiber. A second pathway is triggered by an unknown signal that is associated with the synaptic site, and this signal acts locally to activate delta subunit gene expression only in nuclei within the synaptic region. Synapse-specific expression, however, does not depend upon the continuous presence of the nerve, since transcriptional activation of the delta subunit gene in subsynaptic nuclei persists after denervation. Thus, the nuclei in the synaptic region of multinucleated skeletal myofibers are transcriptionally distinct from nuclei elsewhere in the myofiber, and this spatially restricted transcription pattern is presumably imposed initially by the nerve.

Animals

5' flanking sequences of the rat tyrosine hydroxylase gene target accurate tissue-specific, developmental, and transsynaptic expression in transgenic mice.

Transgenic mice were generated in which sequences that flank the rat tyrosine hydroxylase (TH) gene were linked to the bacterial chloramphenicol acetyl transferase (CAT) gene. Mice bearing 4.8 kilobases (kb) of 5' flanking DNA exhibited correct tissue-specific expression in the CNS and periphery. Expression was more robust in the CNS than in the periphery, although CAT activity was clearly detected in sympathetic ganglia (superior cervical ganglia) and the adrenal, the two peripheral tissues that contain TH-positive cells. Within the brain, CAT expression was seen in all the expected areas containing TH-positive cell bodies, with little or no expression in other regions. In the olfactory bulb, which contains the majority of the CNS TH cells, developmental expression of CAT was quantifiable and was found to parallel the postnatal rise in endogenous TH, with both TH and CAT reaching adult levels by postnatal day 21. Since TH activity in the olfactory bulb requires afferent input, the dependence of CAT activity on transsynaptic input was also assayed in transgenic mice. Like the endogenous TH activity, CAT levels were also reduced by deafferentation, in parallel with loss in endogenous dopamine levels. While previous experiments demonstrated that shorter 5' flanking regions (2.5 kb and 3.5 kb of 5' upstream sequences of the human and mouse TH gene, respectively) failed to direct accurate tissue-specific expression, our data demonstrate that 4.8 kb of 5' flanking sequence of the rat TH gene contains sufficient regulatory information to mediate appropriate tissue-specific expression in all CNS and PNS tissues, as well as to mediate developmental and transsynaptic expression in the olfactory bulb.

Animals

The vegetalizing factor from chicken embryos: its EDF (activin A)-like activity.

The erythroid differentiation capacity of the HPLC-purified mesoderm- and endoderm-inducing vegetalizing factor from chicken embryos and of recombinant erythroid differentiation factor (EDF = activin A), an evolutionary highly conserved member of the TGF-beta protein superfamily have been compared. Both factors stimulate the synthesis of hemoglobin in erythroleukemia cells in the same concentration range. The EDF-activity of the mesoderm-inducing HPLC-fractions is inhibited by follistatin, an EDF-binding protein. The factor induces in ectoderm of Triturus taeniatus all kinds of mesodermal organs. The wide spectrum of organs is very likely to be induced by secondary interactions. At higher concentration (15 ng/ml), notochord- and endoderm-like tissues are induced in a high percentage.

Activins

Isolation of a vegetalizing inducing factor after extraction with acid ethanol. Concentration-dependent inducing capacity of the factor.

A vegetalizing factor has been isolated from chicken embryos by an improved method. The factor is extracted with acid/ethanol and finally purified by four consecutive steps of reversed phase HPLC. The molecular mass is about 25 kDa. The factor dissociates after reduction with dithiothreitol into two subunits of about 13 kDa. The factor was tested on Triturus alpestris by the implantation method, and on isolated ectoderm of Xenopus laevis in solution. The factor induces as the crude fractions all types of mesodermal tissues dependent on the concentration of the factor.

Acids

Covalent coupling of neuralizing factors from Xenopus to Sepharose beads: no decrease of inducing activity.

Two neural inducing factors extracted from Xenopus gastrulae, a basic protein from ribonucleoprotein particles and an acidic protein from the high speed supernatant were covalently bound to CNBr-Sepharose or cross-linked CNBr-Sepharose particles. The protein-Sepharose complexes cannot be taken up by the competent ectoderm cells, but both factors remain fully active. The inducing activity is not due to a release of the bound factors. The experiments suggest that both neural inducing factors act on the cell surface of the competent ectoderm cells.

Animals

An embryonic inducing factor: isolation by high performance liquid chromatography and chemical properties.

A protein (vegetalizing factor) which induces amphibian gastrula ectoderm to tissues which in normal development are derived from endoderm and mesoderm has been isolated from chicken embryo trunks by a combination of size exclusion and reversed phase HPLC. An amount of 0.5 ng factor per gastrula evokes inductions in 80-100% of the cases. The protein (apparent Mr approximately 13 000) is split by NaBH4 to polypeptide chains of about half the size under conditions in which disulfide bridges are reduced. The biological activity is lost.

Amino Acids

Effect of certain organic compounds on saliva secretion in sheep.

In two sheep fitted with esophageal cannulas the stimulation of resting saliva secretion by intrabuccal injections of volatile fatty acids (VFA) and of certain organic plant compounds was investigated. Volatile fatty acids, salicin and vanillin increased saliva flow rate by 100, 76 and 72% over 2.5 min after injection. Minor positive or negative effects were obtained with quercitrin, protocatechuic acid, grass juice, anethole and agaricinic acid. Injections of volatile fatty acids and of salicin induced chewing activities, which were significantly correlated with salivary flow rates. The results indicate that organic plant compounds can provide a stimulus for saliva secretion mediated in part by chewing activities.

Animals