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Biomedical subjects

S Ratner

Publications and source records attributed to S Ratner.

At least 37 records · Page 2Linked to original sources

Inflammatory infiltrates of experimental mammary cancers.

The purpose of this review was to summarize observations on the type and function of inflammatory infiltrates of mouse mammary tumors and to speculate on the underlying mechanisms and the significance of infiltrates to mammary tumor biology. Although the major conclusion is that much more work is needed, certain themes seem to be emerging. The number of infiltrating cells can be very high but is unrelated to biological behavior of the tumors. What seems to be important is the relative contributions of inflammatory cell subsets. In the case of T-cell subsets and NK cells, the infiltrates from tumors of long-term cell lines so far seem uninformative. The general characteristics are similar to those of infiltrates from rapidly proliferating, normal mammary tissues. These characteristics do not correlate with diverse biological behavior or malignant potential. A more informative model appears to be one in which the development of tumors from preneoplastic tissue can be observed. Here our attention is currently focused on NK cells. By contrast, the correlation between activated TAM and metastatic behavior suggests that our transplantable MMT lines may be biologically relevant in the study of infiltrating macrophages. We are especially interested in the role of TAM in the generation of tumor cell variability. Overall, our data indicate that the host infiltrate is another manifestation of both inter- and intra-tumor heterogeneity and, as such, is not simply a response to, but, rather, a part of the tumor ecosystem. Unraveling the cellular and molecular mechanisms that govern the inflammatory cell component of tumors should provide insight into the types of cellular interactions that result in tumor development and progression.

Animals

Analogous recognition of phospholipids by insect phagocytes and mammalian macrophages.

Phagocytic cells from larvae of the moth Heliothis virescens and peritoneal macrophages of mice were observed to preferentially bind negatively charged phospholipid vesicles containing phosphatidylglycerol or phosphatidylserine as compared to neutral or positively charged vesicles. Since phagocytes have retained their primitive function of endocytosis throughout evolution, the recognition of negatively charged phospholipids may be a primitive mechanism for the identification of potential targets by macrophages.

Animals

Argininosuccinate synthetase: essential role of cysteine and arginine residues in relation to structure and mechanism of ATP activation.

We have undertaken studies to identify amino acid residues that are involved in the catalytic mechanism of argininosuccinate synthetase [L-citrulline:L-aspartate ligase (AMP-forming), EC 6.3.4.5] and have found that a cysteine residue and an arginine residue are required for activity. The reactive cysteine residues are accessible to solvent and available to react with 5,5'-dithiobis(2-nitrobenzoic acid) (DTNB). Four cysteine residues, one per subunit, are shown by enzymatic assay to be required for catalytic activity, suggesting that a reactive cysteine lies within the active site of argininosuccinate synthetase. In the presence of sodium dodecyl sulfate, 12 cysteine residues react with DTNB; consequently, all of the half-cystine residues in the native enzyme are present in the reduced sulfhydryl form. We also present evidence for the participation of arginine groups in the binding of ATP and PPi. Modification of argininosuccinate synthetase with [14C]-phenylglyoxal results in incorporation concomitant with loss of catalytic activity of 4 mol of phenylglyoxal per mol of native enzyme (one arginine per active site). ATP and PPi protect the enzyme from phenylglyoxal incorporation. Based on these results, we propose that the essential arginine in the active site participates in the binding of ATP and PPi. The binding of ATP and PPi at the same site is mutually exclusive; this exclusion is in accord with the finding that argininosuccinate synthetase has one reactive arginine residue per active site per subunit. This is consistent with our previously proposed reaction mechanism.

Adenosine Triphosphate

T cell locomotion in the tumor microenvironment. I. A collagen-matrix assay.

Previous studies have shown that lymphocytic infiltrates of different mouse mammary tumors contain different proportions of the T cell subsets Lyt-1+ and Lyt-2+. These characteristic subset ratios may be established, at least in part, by differential locomotion of subsets in response to components of the tumor microenvironment, such as soluble chemotactic and chemokinetic factors, cell and stromal surfaces, oxygen tension, and pH. We describe a new in vitro assay for determining how such microenvironmental variables affect lymphocyte locomotion. Suspended lymph node cells, alone or mixed with other cell types, are sandwiched between two layers of type I collagen gel and bathed in culture medium. A halo of locomotory cells fans out around the flattened droplet. Locomotion requires energy and exogenous protein. After a 24-hr incubation at 37 degrees C, 10% CO2 in air, the cell density of the halo is analyzed optically and the subset ratios are characterized by immunofluorescence staining of the gel sandwich. Under standard culture conditions, the locomotory population is enriched 12% in Thy-1+ cells compared with the bulk population, and the ratio of Lyt-1+ to Lyt-2+ cells is significantly increased. Lymphocyte locomotion is inhibited by 1 microM PGE2, by decreased pH and oxygen tension, and by the presence of normal mammary cells or mammary adenocarcinoma cells. The Lyt-1+:2+ ratio in the locomotory population is not altered by PGE2 but is reduced by acidity and hypoxia. The ratio is also reduced by the presence of mammary cells and cells of one of the mammary adenocarcinoma cell lines tested (168) but not by two others (68H and 410). Our data support the hypothesis that the locomotion of T cell subsets is differentially responsive to the types of microenvironmental conditions that vary among tumors.

Animals

A radiochemical assay for argininosuccinate synthetase with [U-14C]aspartate.

A simple and sensitive radiochemical procedure to assay argininosuccinate synthetase activity in crude tissue homogenates and lysates of cultured cells is described. The new method depends on the location of 14C, uniformly, in the four carbons of aspartate. On incubation in the presence of excess of L-[U-14C]aspartate, L-citrulline, ATP, and an ATP-generating system, argininosuccinase and arginase, the [14C]fumarate formed is measured as the sum of malate and fumarate. After acidification the latter two acids are separated from [14C]aspartate on a small Dowex-50 column by elution with a few milliliters of water; the unutilized amino acid substrates remain on the column. With a specific radioactivity of 9 X 10(4) cpm, 1 to 2 nmol of product can be accurately measured under kinetically optimum conditions.

Animals

Argininosuccinate synthetase of bovine liver: chemical and physical properties.

Homogeneous crystalline argininosuccinate synthetase [L-citrulline:L-aspartate ligase (AMP-forming), EC 6.3.4.5] prepared from bovine liver according to Rochovansky et al. [Rochovansky, O., Kodowaki, H. & Ratner, S. (1977)J. Biol. Chem. 252, 5287-5294] has been characterized with respect to amino acid composition and other chemical and physical properties. The total residue molecular weights derived from the amino acid analysis are in agreement with values previously obtained by physical means for the catalytically active tetramer, 185,000, and the monomer, 46,500. The enzyme is focused sharply at pH 7.6 as a single protein. Additional properties reported include 2.74 X 10(5) M-1 cm-1 for the molar absorption coefficient, based on the absolute value for protein, and 0.747 ml/g for the chemically based partial specific volume.

Amino Acids