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Biomedical subjects

H Noll

Publications and source records attributed to H Noll.

At least 19 recordsLinked to original sources

Storage, ultrastructural targeting and function of toposomes and hyalin in sea urchin embryogenesis.

This study compares by immunogold labeling the ultrastructural localization of a hexameric 22S glycoprotein, called toposome, with that of hyalin in unfertilized eggs and cells of hatched sea urchin blastulae. Nearly all hyalin is present in the electron translucent compartment of the cortical granules and in the translucent non-cortical pigment granules. In the blastula both of these intracellular stores have vanished and hyalin now forms a broad band below the apical lamina. By contrast, in the egg toposomes are present on the surface, as well as stored in yolk granules and in the electron dense lamellar compartment of the cortical granules. In the hatched blastula, toposomes that have been modified by limited proteolysis in the yolk granules, are associated with the plasma membranes of all newly formed cells, while the toposomes originating from the cortical granules have been incorporated as unmodified 160 kDa polypeptides into an extracellular double layer enveloping the embryo on the outside of the hyaline layer. From evidence discussed in detail, we conclude that the extracellular toposomes rivet the apical lamina to the surface and underlying cytoskeleton of the microvilli, while the modified toposomes from the yolk granules are responsible for position specific intercellular adhesion as they are released to the surface of newly formed cells. We propose that all the material stored in yolk granules is utilized for the assembly of new membranes.

Animals

Functional characterization of toposomes from sea urchin blastula embryos by a morphogenetic cell aggregation assay.

This paper documents the evidence that the large oligomeric glycoprotein complexes of unknown function first isolated as 22S particles from sea urchin embryos are the sole agents responsible for the adhesive integrity of sea urchin blastula embryos. The conclusion rests on the demonstration that polyclonal IgG (as serum or monovalent Fab) against whole membranes or butanol-solubilized components of membranes, as well as against the purified particle itself, completely blocks reaggregation of dissociated blastula cells and that this inhibition is reversed by neutralization of the inhibitory antibodies with purified 22S antigen. An essential aspect of the evidence is the combination of quantitative endpoint titrations in microtiter wells with the qualitative parameters of morphogenesis. The new data complement previous evidence that morphogenesis is mediated by a general class of particles, toposomes, responsible for mechanical linkage between cells and their positional guidance in embryogenesis.

Animals

Sequencing the human genome.

The title of the report by R. Myerowitz and N. Hogikyan on page 1646 of the issue of 27 June was incorrect. It should have been "Different mutations in Ashkenazi Jews and non-Jewish French Canadians with Tay-Sachs disease."

Base Sequence

Characterization of toposomes from sea urchin blastula cells: a cell organelle mediating cell adhesion and expressing positional information.

Cell adhesion in the sea urchin blastula is mediated by a 22S genus-specific glycoprotein complex consisting initially of six 160-kDa subunits that are processed proteolytically as development proceeds. Noncytolytic removal of the 22S particle from the surface with either 2.5% butanol or trypsin renders dissociated cells reaggregation incompetent, and addition restores reaggregation and development. Polyclonal antibodies against the 22S complex prevent reaggregation in a genus-specific manner while monoclonal antibodies stain cell surface structures in a pattern consistent with a code that specifies the position of a cell in the embryo by a unique combination of subunits in its cell adhesion particles. The existence of similar particles in Drosophila and amphibian embryos suggests that these glycoprotein complexes are a general class of organelles, the toposomes, that in the embryo mediate cell adhesion and express positional information.

Animals

Interaction of D-LSD with blood platelets of rabbits: shape change and specific binding.

In blood platelets of rabbits, the shape change-inducing effect of D-lysergic acid diethylamide (D-LSD) has been compared with the D-LSD-binding. D-LSD, but not L-LSD, caused a shape change reaction (EC50 1.3 x 10(-9) M) which was inhibited by various 5-HT antagonists (methergoline and neuroleptic drugs), butaclamol showing marked stereospecificity. Strong inhibitors of 5 HT uptake were only weak in counteracting the D-LSD-induced shape change. Furthermore, D-[3H]LSD bound to platelets at a single saturable, high affinity, stereoselective site [Kd = (31.1 +/- 3.3) x 10(-9) M; Bmax = 28.9 +/- 2.7 fmols per 10(8) platelets]. This binding was strongly antagonized by D-LSD and methergoline and less by the hallucinogenic drugs, psilocin, bufotenin and N'N'-dimethyltryptamine. L-LSD an 5 HT, inhibitors of 5 HT uptake and neuroleptics, especially spiroperidol and butaclamol, had only a weak antagonistic effect. The latter showed stereospecificity. It is concluded that 1) the shape change reaction caused by D-LSD in platelets is mediated by the specific 5 HT-receptor, 2) the sites mediating the D-LSD-induced shape change reaction are not identical with those responsible for D-[3H]LSD-binding and both these sites are different from the 5 HT-transport sites and 3) with respect to D-LSD-binding sites, platelets and neurons are not exactly identical.

Animals

Inverse affects on thymidine incorporation in dissociated blastula cells of the sea urchin Paracentrotus lividus induced by butanol treatment and fab addition.

When dissociated blastula cells of the sea urchin Paracentrotus lividus were prevented from aggregating by extracting them with 2.5% n-butanol in sea water, they became unable to incorporate labelled thymidine, like over-diluted dissociated cells. If, however, cells were prevented from aggregating by the addition of Fab against plasma membranes, thymidine incorporation was not blocked, but increased compared to that of spontaneously aggregating cells. At the same time amino acid incorporation also increased.

Animals

Reconstitution of membranes and embryonic development in dissociated blastula cells of the sea urchin by reinsertion of aggregation-promoting membrane proteins extracted with butanol.

Blastula embryos of the sea urchin Paracentrotus lividus, when dissociated into single cells by exposure to Ca2+- and Mg2+-free sea water, reassociate spontaneously to form aggregates capable of development to the final larval form (pluteus). This aggregation is prevented by Fab fragments obtained by immunization with purified membranes from blastula embryos. The inhibition was reversed by soluble proteins extracted with butanol from purified membranes or from intact cells. These extracts also strongly stimulated the rate of reaggregation of dissociated cells in the absence of Fab fragments. Exposure of dissociated cells to 2.5% (vol/vol) butanol removed completely the protein(s) responsible for reaggregation of the cells without impairing their viability. Reaggregation and embryonic development were completely restored to the extracted cells by readdition of the proteins extracted from either membranes or cells. Extracted cells from Paracentrotus could be reconstituted with proteins from Arbacia.

Animals

Cell surface alterations on colon adenocarcinoma cells.

By the use of five independent techniques, cell surface alterations distinctive of malignant as compared to normal colon cells were detected on in vivo surgical specimens and on cultured cell lines established in our laboratory. The findings, which were distinctive of the malignant as compared to the normal cell included: (a) polymorphism of surface microvilli on scan electron microscopy; (b) decreased susceptibility to infection with vaccinia and reovirus, but not to herpes, adeno- or echovirus: (c) production of large quantities of carcinoembryonic antigen; (d) presence of specific membrane proteins on sodium dodecyl sulfate-polyacrylamide gel analysis of plasma membranes purified from cell homogenates by ultracentrifugation in polyethylene glycol-dextran partitions; and (e) reaction with specific, cytotoxic, rabbit heteroantisera. Solubilized extracts of the malignant cells formed precipitin lines with the heteroantisera, suggesting that the distinctive antigens could be released from the cell surface. These results suggest that human colon carcinomas bear tumor-distinctive proteins and offer the prospect of specific immunodiagnostic reagents and immunotherapeutic tools.

Adenocarcinoma