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Biomedical subjects

G Warren

Publications and source records attributed to G Warren.

At least 163 records · Page 9Linked to original sources

A monoclonal antibody against a 135-K Golgi membrane protein.

A monoclonal antibody ( 53FC3 ) has been produced against a Golgi membrane protein with a mol. wt. of 135 000 which was originally identified using a polyclonal antiserum. Treatment of isolated, intact Golgi vesicles with protease caused a decrease in mol. wt. of 5000-10 000, whereas in the presence of Triton X-100, the protein was completely degraded. This shows that the protein spans the bilayer and that most of its mass is on the luminal side of Golgi membranes. Using two immunoelectron microscopic techniques, the protein was found in one or two cisternae on one side of the Golgi stack which, in normal rat kidney cells, had 4-6 cisternae. As an illustration of the use to which this monoclonal antibody can be put we present a light microscopic study of the disassembly and reassembly of the Golgi complex during mitosis.

Animals↗

Mutagenicity of a series of hexacoordinate cobalt(III) compounds.

15 cobalt(III) compounds have been tested for DNA-damaging capabilities using an E. coli differential repair assay and for mutagenicity in strains of Salmonella typhimurium. 4 of these compounds were active in both systems. Although the general ligand requirements for genetic activity of cobalt(III) appear to closely parallel those of chromium(III) and rhodium(III), the genetic activity of cobalt compounds seems particularly dependent upon the structure of the ligands coordinated about the metal ion. By a simple methyl substitution on the organic ligands, a compound completely devoid of activity, e.g. trans-[Co(pyr)4Cl2]Cl, could be made slightly mutagenic in Salmonella typhimurium strains e.g. trans-[Co(3-pic)4Cl2]Cl. Substitution at the 4-position rather than the 3-position on the same pyridine ring, e.g. trans-[Co(4-pic)4Cl2]Cl, results in a 50-fold enhancement of activity in both repair and mutagenesis systems. The difference in genetic activity is attributed to the influence of the ligands on the relative lability of the metal complex.

Cobalt↗

Antibodies to the Golgi complex and the rough endoplasmic reticulum.

Rabbits were immunized with membrane fractions from either the Golgi complex or the rough endoplasmic reticulum (RER) by injection into the popliteal lymph nodes. The antisera were then tested by indirect immunofluorescence on tissue culture cells or frozen, thin sections of tissue. There were may unwanted antibodies to cell components other than the RER or the Golgi complex, and these were removed by suitable absorption steps. These steps were carried out until the pattern of fluorescent labeling was that expected for the Golgi complex or RER. Electron microscopic studies, using immunoperoxidase labeling of normal rat kidney (NRK) cells, showed that the anti-Golgi antibodies labeled the stacks of flattened cisternae that comprise the central feature of the Golgi complex, many of the smooth vesicles around the stacks, and a few coated vesicles. These antibodies were directed, almost entirely, against a single polypeptide with an apparent molecular weight of 135,000. The endoplasmic reticulum (ER) in NRK cells is an extensive, reticular network that pervades the entire cell cytoplasm and includes the nuclear membrane. The anit-RER antibodies labeled this structure alone at the light and electron microscopic levels. They were largely directed against four polypeptides with apparent molecular weights of 29,000, 58,000, 66,000, and 91,000. Some examples are presented, using immunofluorescence microscopy, where these antibodies have been used to study the Golgi complex and RER under a variety of physiological and experimental condition . For biochemical studies, these antibodies should prove useful in identifying the origin of isolated membranes, particularly those from organelles such as the Golgi complex, which tend to lose their characteristic morphology during isolation.

Animals↗

Viral membrane proteins acquire galactose in trans Golgi cisternae during intracellular transport.

Frozen, thin sections of baby hamster kidney (BHK) cells were incubated with either concanavalin A (Con A) or Ricinus communis agglutinin I (RCA) to localize specific oligosaccharide moieties in endoplasmic reticulum (ER) and Golgi membranes. These lectins were then visualized using an anti-lectin antibody followed by protein A conjugated to colloidal gold. All Golgi cisternae and all ER membranes were uniformly labeled by Con A. In contrast, RCA gave a uniform labeling of only half to three-quarters of those cisternae on the trans side of the Golgi stack; one or two cis Golgi cisternae and all ER membranes were essentially unlabeled. This pattern of lectin labeling was not affected by infection of the cells with Semliki Forest virus (SFV). Infected cells transport only viral spike glycoproteins from their site of synthesis in the ER to the cell surface via the stacks of Golgi cisternae where many of the simple oligosaccharids on the spike proteins are converted to complex ones (Green, J., G. Griffiths, D. Louvard, P. Quinn, and G. Warren. 1981. J. Mol. Biol. 152:663-698). It is these complex oligosaccharides that were shown, by immunoblotting experiments, to be specifically recognized by RCA. Loss of spike proteins from Golgi cisternae after cycloheximide treatment (Green et al.) was accompanied by a 50% decrease in the level of RCA binding. Hence, about half of the RCA bound to Golgi membranes in thin sections was bound to spike proteins bearing complex oligosaccharides and these were restricted to the trans part of the Golgi stack. Our results strongly suggest that complex oligosaccharides are constructed in trans Golgi cisternae and that the overall movement of spike proteins is from the cis to the trans side of the Golgi stack.

Animals↗

Mutagenicity of a series of hexacoordinate rhodium(III) compounds.

19 rhodium(III) compounds have been tested for genetic damaging capabilities using an Escherichia coli differential repair assay and for mutagenicity in the strains of Salmonella typhimurium. 10 of these were active in both assays. Presence of the plasmid pKM101 was required for mutagenicity in Salmonella. Both the composition of the ligands and the free-dimensional structures of the coordination complexes profoundly affect genetic activity. In general, the structure--activity relationships appear to favor complexes with (1) a +1 charge, (2) 2-relatively labile leaving groups with 4 more strongly bonded amine ligands, and (3) a relatively slow rate of exchange of the ligands which is characteristic of substitutionally inert coordination complexes.

Escherichia coli↗

Mutagenicity of a series of hexacoordinate chromium (III) compounds.

17 chromium(III) compounds have been tested for DNA-damaging capabilities using an E. coli differential repair assay and for mutagenicity in strains of Salmonella typhimurium. 4 of these compounds were active in both assays. Another 4 compounds were positive only in the repair assay and 9 were devoid of activity in both assays. Most of the doubly active complexes contain aromatic amine ligands like 2,2'-bipyridine and 1,10-phenanthroline. Closely related complexes of ligands derived from saturated amines are much less active. It appears that chromium(III) in the proper ligand environment can have considerable genetic toxicity and could represent one of the several possible ultimate species in a mechanism for chromium mutagenesis and carcinogenesis.

Chromium↗

The role of clathrin-coated vesicles in acrosome formation.

Ultrastructural and cytochemical observations are presented which suggest that coated vesicles originating from the trans (distal) aspect of the rat spermatid Golgi apparatus transport lysosomal enzymes from the Golgi to the developing acrosome. Using an affinity purified antibody against the clathrin coats of pig brain coated vesicles, immunofluorescence and immuno-electron microscopic studies were carried out on frozen sections of rat seminiferous tubules. The results showed a specific labelling of the Golgi-acrosome region which corresponded precisely with the location of the coated vesicles in Epon sections. We conclude tht a least some of the coated vesicles in this region have clathrin coats.

Acid Phosphatase↗

Cell-free synthesis and membrane insertion of mouse H-2Dd histocompatibility antigen and beta 2-microglobulin.

Messenger RNA from SL2 lymphoma cells was translated in a cell-free system in the presence of microsomal membranes. Mouse H-2Dd histocompatibility antigen was correctly assembled in the microsomal membranes, and transmembrane insertion of the nascent chain was accompanied by glycosylation and cleavage of the signal sequence H-2Kd antigens, synthesized in vivo, comprised a transmembrane glycoprotein and an unglycosylated protein in the cytoplasm. The glycosylated forms of the H-2Dd and H-2Kd antigens were modified during intracellular transport from the endoplasmic reticulum to the cell surface. beta 2-Microglobulin was also synthesized in vitro, and transfer of this protein into microsomal vesicles was accompanied by cleavage of its signal sequence. In the endoplasmic reticulum, beta-microglobulin can bind to newly synthesized H-2d glycoproteins. The mRNAs coding for beta 2-microglobulin and H-2Dd antigen could be separated on aqueous sucrose gradients.

Animals↗

Structure and function of plasmid ColE1 and related plasmids.

Analysis of plasmid ColE1, its naturally occurring relatives ColK and CloDF13, and a wide range of ColE1 derivatives containing either insertions or deletions of genetic material has allowed localization on the ColE1 genome of DNA sequences responsible for colicin E1 synthesis, immunity to colicin killing, conjugal mobility and incompatibility. We have examined incompatibility between pairs of ColE1 derivatives ranging in size from 2.6 to 13.8 Md. Though all the plasmids tested exerted ColE1 incompatibility, a definite pattern was observed regarding the dominant plasmid in any pair tested (i.e. the plasmid that displaces the other from a heterozygote). Usually the larger plasmid is displaced. We conclude that loci for incompatibility reside within 0.7 kb of the ColE1 replication region. A model is presented to explain both the incompatibility data and the observation that the fraction of total DNA occurring as ColE1-like plasmid in a cell is approximately constant. Transposons Tn1 and Tn3 (3.2 Md; Apr and approximately 85% homologous), Tn501 (5.5 Md; Hgr), and Tn7 (9.3 Md; Tpr Smr) can all be transposed into ColE1. Though all have closely related. Tn501 and Tn7 do not complement transposition of Tn3 transposition defective deletions. A Tn3-specified 19,000 dalton protein is absent in one particular class of transposition-defective deletion.

Bacterial Proteins↗

Incompatibility and transforming efficiency of ColE1 and related plasmids.

Replicons derived from the ColE1 plasmid are incompatible with one another, but are compatible with their naturally occurring relatives ColK and CloDF13. The incompatibility results in loss, by segregation, of one or the other ColE1 plasmid. In most cases, the smaller derivatives tend to displace the larger ones, and the rate of displacement depends on the difference in size. One mini-plasmid retains only 19% of the sequences of ColE1, yet it exerts strong incompatibility: other ColE1 plasmids are rapidly lost when it is introduced into the host. The region essential for ColE1 incompatibility is deduced to lie within 700 base pairs of the origin of replication. The transforming efficiency of any ColE1 plasmid is markedly lowered when another incompatible replicon is resident in the competent cells, even when the transforming plasmid is much smaller than the resident. A model of incompatibility is proposed to account for these effects.

Colicins↗