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Biomedical subjects

C Green

Publications and source records attributed to C Green.

At least 307 records · Page 17Linked to original sources

Sialic acid uptake by fibroblasts.

The existence of surface sialytransferases that use cytidine monophosphate (CMP)-sialic acid as substrate has been postulated in previous studies. This is based on the assumption that if whole, viable cells can catalyze the transfer of sialic acid from CMP-sialic acid to endogenous acceptors, then the transferases carrying out the reaction must be on the cell surface, provided that (1) CMP-sialic acid does not enter the cells, and (2) CMP-sialic acid does not break down outside the cells, yielding free sialic acid which then may enter the cells, in amounts large enough to explain the incorporation. We now report evidence showing that after incubation of intact NIL, BHK, and 3T3 fibroblasts with CMP-sialic acid, at least 78% of the sialic acid incorporated by these cells is the result of free sialic acid uptake. When cells growing in a monolayer were incubated with a mixture of CMP-[14C]sialic acid and [3H]CMP-sialic acid with a ratio of 3H/14C=0.60, this ratio was found to be markedly increased in whole cells. Chemical analyses of the radioactive species in the incubation medium showed that a considerable portion of the radiolabeled sugar nucleotide had broken down to cytidine, phosphoric acid, and sialic acid. Upon incubation of cells with doubly labeled sugar nucleotide in the presence of a large excess of both nonradiolabeled cytidine and sialic acid, the cells incorporated less than 6% of both isotopes. Incubation of cells with a mixture of CMP-[14C]sialic acid and [3H]sialic acid resulted in only 20-40% of the radioactivity within the cells being membrane bound, and 70-90% of this incorporation could be inhibited by the addition of 10 mM azide to the incubation medium. The possibility that a small fraction of the total incorporation of sialic acid by these cells is due to surface sialytransferases cannot be completely ruled out. The uptake of free sialic acid by these fibroblasts is concentration dependent and a portion of it is incorporated into glycoproteins and glycolipids. Considerable loss of cell integrity was observed when fibroblasts grown on plates were removed by (ethylenedinitrilo)-tetraacetic acid or trypsin and subsequently incubated in buffer, indicating that these preparations are not suitable for intact cell studies.

Azides↗

Combination chemotherapy in vitro with cis-dichlorodiammineplatinum(II).

Cis-dichlorodiammineplatinum(II) (DDP) was paired with 11 other chemotherapeutic drugs in a search for possible synergistic pairs. Cell lethality was investigated by the colony-formation technique utilizing a long-term culture of human lymphoma cells. Synergistic effects were noted for pair combinations with all alkylating agents, bleomycin, adriamycin, camptothecin, and cytosine arabinoside. Additive effects were recorded for combinations with prednisolone and VP-16-213, while DDP reduced the capacity of cells to absorb sublethal damage induced by alkylating agents.

Alkylating Agents↗

Low molecular weight immunoglobulins in Rana catesbeiana tadpoles.

Rana catesbeiana tadpoles formed high and low m.w. antibodies in response to immunization with a bacteriophage. Although the neutralizing activity associated with the low m.w. immunoglobulins was relatively weak, the existence of antibodies in this class was clearly demonstrated by radioimmunoelectrophoresis. Moreover, two antigenically distinct variants of the low m.w. antibodies were detected. These were serologically indistinguishable from the two types of low m.w. immunoglobulin previously isolated from the serum of adult frogs of this species.

Animals↗

Isolation and preliminary characterization of two varieties of low molecular weight immunoglobulin in the bullfrog, Rana catesbeiana.

Two varieties of low m.w. immunoglobulins have been isolated from the serum of Rana catesbeiana frogs. They are highly cross-reactive, although each also contains unique antigenic determinants. Since both low m.w. immunoglobulins were identified in the serum of 22 individual frogs, it was concluded that they are isotypic variants. The light chains of R. catesbeiana and mammalian high and low m.w. immunoglobulins are similar in electrophoretic mobility on polyacrylamide gels containing sodium dodecyl sulfate. The heavy chains of fropg high m.w. immunoglobulins have the mobility of mammalian mu-chains; the heavy chains of both variants of frog low m.w. immunoglobulins migrate between mammalian mu- and gamma-chains in approximately the position of mammalian alpha-chains. An unusual structural feature of the R. catesbeiana high ald low m.w. immunoglobulins is that the unreduced proteins are partially dissociated in sodium dodecyl sulfate.

Animals↗

Immunoglobulins in ranid frogs and tadpoles.

Three distinct immunoglobulins (Igs) have been isolated from serum of Rana catesbeiana frogs. One of these is high in molecular weight and probably corresponds to the IgM-like Igs that have been isolated from a variety of vertebrate species. The other 2 Igs are lower in molecular weight (approximately 7S) and very similar in subunit structure. They were highly cross-reactive, although each contained unique antigenic determinants. Their relationship to other vertebrate Ig classes remains to be established. The mode of subunit linkage in all 3 Igs is unusual since the unreduced proteins were partially dissociated in detergent. Serum from R. catesbeiana tadpoles contained Igs that were antigenically identical to each of the Igs in adults of this species. Sera from R. pipiens and R. clamitans frogs and tadpoles contained Igs that cross-reacted with the R. catesbeiana high and low molecular weight Igs.

Animals↗

Fluorescence studies of protein-sterol relationships in human plasma lipoproteins.

Cholesta-5,7,9(11)-trien-3beta-ol and its oleate ester were incorporated into human low-density lipoprotein and reconstituted high-density lipoprotein. The unesterified sterol was more efficient than its ester in quenching tryptophan fluorescence, especially in low-density lipoprotein. The results, which indicate that in such lipoproteins unesterified sterols are more closely associated with peptide than are esterified sterols, are used to assess possible structures for the lipoproteins.

Cholestenes↗

Optical-rotatory-dispersion studies of compounds related to cholesterol in liposomes and the membranes of erythrocyte 'ghosts'.

1. Steroid molecules containing the alpha,beta-unsaturated oxo group in various positions were incorporated with egg phosphatidylcholine into liposomes and into human erythrocyte membranes. 2. The liposomes formed contained 0.3-0.94mol of steroid/mol of phospholipid and the steroids replaced 19-76% of the erythrocyte membrane sterol. 3. The optical rotatory dispersion (o.r.d.) spectra of the steroids in these structures were compared with those obtained in solvents of different polarity. 4. The o.r.d. spectra of cholesta-4,6-dien-3-one and 3-hydroxycholest-3-en-2-one in liposomes resembled those obtained with polar solvents such as ethanol or triethyl phosphate-water (1:1, v/v). 5. The o.r.d. spectra of 3-hydroxycholest-7-en-6-one and 3-hydroxycholest-5-en-7-one in liposomes resembled those obtained with moderately polar solvents such as dioxan. 6. The o.r.d. spectrum of 3-hydroxycholest-8(14)-en-15-one in liposomes resembled those obtained with non-polar solvents such as cyclohexane. 7. 3-Hydroxycholest-3-en-2-one did not exchange with erythrocyte membrane cholesterol, but the other steroids did do so and the o.r.d. spectra of the membranes containing them closely resembled those obtained with liposomes. 8. From the results, the position of sterol molecules with respect to the phospholipid molecules in liposomes and membranes of human erythrocyte ;ghosts' can be deduced.

Cell Membrane↗