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R Lieberman

Publications and source records attributed to R Lieberman.

At least 73 records · Page 4Linked to original sources

Introduction of H-2Dd determinants into the H-2Ld antigen by site-directed mutagenesis.

We used site-directed mutagenesis to localize serologically defined (s) and CTL (c)-defined alloantigenic determinants to discrete amino acid sequences of a murine MHC class I antigen. Based on the prediction that amino acid position 63-73 of the H-2Dd antigen forms s-allodeterminants, the H-2Ld gene was mutated in a sequential fashion to replace codons for amino acid positions 63, 65, 66, 70, and 73 with those of the H-2Dd amino acids. Epitopes of the mutant antigens expressed in L-cells were examined by the binding of a series of mAbs specific for the H-2Dd antigen. The mutant antigen M66 had substitutions at residues 63, 65, and 66, and resulted in the acquisition of a number of H-2Dd-specific s-epitopes. Mutant M70 had an additional substitution at residue 70, which led to the gain of multiple additional H-2Dd s-epitopes. Together, more than half of all the relevant H-2Dd s-epitopes were mapped into amino acid position 63-70 of the H-2Dd molecule, which was expressed in the mutant H-2Ld gene. The final mutation at residue 73 (M73) caused no new epitope gains, rather, a few Dd s-epitopes acquired by the preceding mutations were lost. All of the H-2Ld-specific s-determinants were retained in the mutant molecules, as were H-2Dd s-determinants specific for the alpha-2 or alpha-3 domains. Changes of these residues affected c-determinants defined by CTL. Anti-H-2Dd CTL cultures and an anti-H-2Dd CTL clone recognized the mutant H-2Ld molecules, M66 and M70. Some CTL clones generated against the Q10d molecule, which has an identical sequence to H-2Dd between residues 61 and 73, failed to recognize native H-2Dd or Ld but did crossreact with mutant Ld. While bulk-cultured anti-H-2Ld CTL cultures reacted strongly against M73, bulk-cultured H-2Ld restricted anti-vesicular stomatitis virus CTL did not. Finally, at the clonal level two of three anti-H-2Ld CTL clones lost reactivity with some or all of these mutant molecules. From these results we conclude that a stretch of amino acids from position 63 to 70 of the alpha-1 domain controls major s- and c-antigenic sites on the H-2Dd antigen and c-sites on H-2Ld antigen.

Amino Acid Sequence↗

Induction of major histocompatibility class I antigens by interferons in undifferentiated F9 cells.

Mouse embryonal carcinoma F9 cells, upon treatment with interferons (IFNs), express major histocompatibility (MHC) Class I antigens, which are otherwise not expressed in these cells. Both IFN-gamma and IFN-alpha/beta increase the steady-state level of Class I mRNA within 60 min of the treatment which leads to the subsequent surface expression of the H-2Kb and H-2Db antigens, suggesting that undifferentiated F9 cells express IFN receptors. IFNs induce Class I antigen expression in F9 cells in a highly selective manner: unlike retinoic acid treatment which also stimulates the antigen expression, IFNs induce neither morphological differentiation, increased binding of epidermal growth factor, nor reduction of expression of stage specific embryonic antigen. The effect of IFNs is reversible; removal of IFNs, even after prolonged exposures, results in a rapid loss of the Class I gene expression. Further, Class I mRNA induction is not inhibited by cycloheximide, suggesting possible independence from de novo protein synthesis. This Class I antigen induction in F9 cells is reminiscent of that observed in somite stage mouse embryos by IFN treatment and may offer a model system to study activation of MHC genes during development.

Animals↗

Requirement for prostaglandin F2 alpha in 17 beta-estradiol stimulation of DNA synthesis in rabbit endometrial cultures.

We have hypothesized that two of the endogenously synthesized endometrial prostaglandins (PGs), prostaglandin F2 alpha (PGF2 alpha), and prostaglandin E1 (PGE1), play a regulatory role in growth control of the rabbit endometrium. PGF2 alpha increases DNA synthesis and PGE1 inhibits that effect. Primary cultures of rabbit endometrial cells were used to examine the possible role of these PGs in the mechanism of action of 17 beta-estradiol on DNA synthesis. Towards this end, binding, second messenger and DNA synthesis experiments were performed. 17 beta-estradiol stimulation resulted in a time dependent (optimal: approximately 6 h) and 17 beta-estradiol concentration dependent (optimal: approximately 10(-7) M 17 beta-estradiol in phenol red-containing medium) increase in [3H]PGF2 alpha binding. Scatchard type analysis of the binding data revealed an increase in receptor number while the receptor affinity for [3H]PGF2 alpha remained the same as in the control treated cultures. This 17 beta-estradiol stimulated increase in PGF2 alpha receptor allowed a suboptimal concentration of PGF2 alpha (10(-9) M) to increase intracellular levels of inositol polyphosphates, while by itself this concentration of PGF2 alpha caused no significant change in intracellular inositol polyphosphate levels. 17 beta-estradiol, alone among the several studied steroid hormones, could increase [3H]PGF2 alpha binding. Proliferation studies revealed that, in these primary cultures of rabbit endometrium, 17 beta-estradiol could increase DNA synthesis but not in the presence of indomethacin, unless PGF2 alpha was added to the medium at a concentration (10(-10) M) near or above what is normally accumulated in the medium by these cultures. In the absence of 17 beta-estradiol stimulation, addition of these same low concentrations of PGF2 alpha had no effect on DNA synthesis. Apparently, through its effect on the PGF2 alpha receptor, 17 beta-estradiol enhances the PGF2 alpha stimulated DNA synthesis response approximately 100 fold. The DNA synthesis induced by 17 beta-estradiol can be inhibited by PGE1, as can PGF2 alpha-induced DNA synthesis. We propose that 17 beta-estradiol may be mediating its mitogenic effect through an alteration of the prostaglandin agonist:antagonist control of proliferation in rabbit endometrial cultures. In addition we suggest that, if 17 beta-estradiol acts to increase PGF2 alpha, receptors as part of its mode of action, this may be of importance in other tissues possessing both prostaglandin and 17 beta-estradiol receptors.

Animals↗

Prostaglandin F2 alpha and E1 regulation of proliferation in primary cultures of rabbit endometrial cells.

The study of growth of endometrial cells is of importance in reproductive biology. Several factors and hormones are thought to play important roles in the control of growth. Prostaglandin F2 alpha (PGF2 alpha) causes an increase in both tritiated thymidine ([3H]Tdr) incorporation into DNA and in the cell number of primary cultures of rabbit endometrial cells cultured in a serum-free, chemically defined media. Prostaglandins F1 alpha, E1, E2, A2, and B2 and arachidonic acid (all tested at 10(-7) M) do not affect [3H]Tdr incorporation as compared to control cultures. The increase in [3H]Tdr incorporation into DNA in response to PGF2 alpha stimulation is concentration-dependent (optimal approximately 3 X 10(-7) M) and is seen starting approximately 9 hr poststimulation. Both prostaglandin E1 (PGE1) and prostaglandin E2 (PGE2), but not PGs F1 alpha, I2, A2, B2, their parent molecules, or related molecules, antagonize and can completely block the PGF2 alpha-induced increase in [3H]Tdr incorporation into DNA. This antagonism is seen both when the cells are pretreated with PGE1 prior to the PGF2 alpha stimulation and when the cells are exposed to both PGE1 and PGF2 alpha simultaneously. Exogenously added 8-Br-cAMP mimics the PGE1 antagonism of PGF2 alpha. The PGF2 alpha-induced increase in [3H]Tdr incorporation is not synergistic, antagonistic, or additive with the [3H]Tdr incorporation increase in response to either estradiol-17 beta or epidermal growth factor. The specific effect of PGF2 alpha on primary culture endometrial cell growth and its antagonism by PGE1, PGE2, and 8-Br-cAMP are new findings.

8-Bromo Cyclic Adenosine Monophosphate↗

Binding and second messengers of prostaglandins F2 alpha and E1 in primary cultures of rabbit endometrial cells.

Several factors and hormones are thought to play a role in the growth control of endometrial cells. We have shown that prostaglandin F2 alpha (PGF2 alpha) is a growth factor for primary cultures of rabbit endometrial cells grown in serum-free, chemically defined medium and that prostaglandin E1 (PGE1) antagonizes the PGF2 alpha induction of growth (Orlicky et al., 1986). [3H]PGF2 alpha binds to whole cells in a time (optimal approximately 30 min)- and temperature-dependent (optimal 37 degrees C), disassociable (90% disassociable within 30 min), saturable (Kd1 = 4.9 X 10(-8) M, n1 = 1.2 X 10(5) molecules/cell; Kd2 = 2.6 X 10(-7) M, n2 = 3.0 X 10(5) molecules/cell), and specific manner. [3H]PGE1 binds in a time-dependent (optimal 25 min), disassociable (90% disassociable within 10 min), saturable (Kd = 6.4 X 10(-8) M, n = 1.2 X 10(5) molecules/cell), and specific manner. This specific binding of [3H]PGF2 alpha and [3H]PGE1 is down-regulatable by prior treatment of the cultures with unlabeled ligand, and up-regulatable by prior treatment of the cultures with indomethacin to inhibit endogenous PG synthesis. Proteolytic enzyme treatment for 2 min reduces the specific binding of PGF2 alpha by 75%. PGE1 stimulates intracellular cAMP synthesis and accumulation in a time (optimal 10 min)- and concentration (half-maximal stimulation at 10(-6) M)-dependent manner but has no effect on intracellular cGMP. PGF2 alpha has no effect on either intracellular cAMP or cGMP in this system. We describe here for the first time the analysis at a biochemical level of the interaction between two prostaglandins, antagonistic to each other in terms of growth regulation.

Alprostadil↗

IgA isotype-restricted idiotypes associated with T15 Id+ PC antibodies.

Idiotypes are believed to be due to the structural conformation of the variable region of immunoglobulins (Ig). We have found an idiotype (C3-24) that requires both variable and constant regions of the heavy chain to be expressed. C3-24 Id is associated with both the T15 variable region from anti-phosphorylcholine (PC) antibodies and the constant region for the alpha-heavy chain. High titer anti-PC serum from a variety of inbred strains of different Ig haplotypes failed to express C3-24 Id. However, when IgA but not IgG or IgM fractions were isolated from a pool of anti-PC serum from BALB/c mice, more than 70% of the molecules expressed C3-24 Id. The high frequency of the expression of C3-24 Id in IgA anti-PC hybridoma proteins from mice of different Ig haplotypes and in the IgA fraction of normal anti-PC antibodies from BALB/c and presumably other strains of mice suggests that idiotypic determinants produced by the three-dimensional product of VH and CH regions may not be unusual.

Animals↗

T15 D region germ line amino acid sequences distinguished by monoclonal anti-idiotope antibody.

Monoclonal antibody NL16, prepared with phosphorylcholine (PC)-binding myeloma protein C.BBPC3 (C3), identified an idiotope (C3-16 Id) that was present on T15 IdX+ myeloma proteins (MP) C3, T15, and H8, but not the T15 IdX- MP M167 and M603. The binding of C3 to NL16 is PC inhibitable, indicating that C3-16 Id is site associated. Inhibition studies with PC-specific hybridoma proteins (HP) demonstrated that the T15-type L chain VK22 and elements of the H chain were required for C3-16 Id expression. Studies of amino acid sequences of these PC-binding HP and MP showed that VK22+, T15 IdX+ HP, and MP that use the T15 D region (YYGSS) sequences were always C3-16 Id+. However, the reverse was not true, because all but one VK22+, T15 IdX+ HP with D region sequence changes were C3-16 Id-. This suggested that NL16 defined a specificity mainly determined by the D region of the H chain. A direct test of this hypothesis with heterologous heavy/light chain recombinant molecules obtained from C3-16 Id+ and C3-16 Id- HP of known sequence, showed that the D region was critical to idiotope expression. Additionally, an examination of the amino acid sequences of VK22+, T15 IdX- HP, HPCG14, and HPCM6 suggest that profound changes in the D region may also alter the expression of T15 IdX (an Id defined by a multispecific antiserum from A/He mice). The C3-16 Id+ was found in anti-PC serum of most Ig haplotype-inbred strains except for CBA/J, C3H, and PL, which are all of the Igh-Cj haplotype. Amino acid sequences of PC-binding CBA and PL HP showed marked changes in the D region from the T15 type, and this may account for the C3-16 Id- character of Igh-Cj strains.

Amino Acid Sequence↗

IgA polymorphism in mice: individual light chains can pair covalently with some alpha heavy chains and non-covalently with others.

The molecular basis for the two different forms of IgA in mice, distinguished by the covalent or non-covalent association of light (L) and heavy (H) chains, is unknown. In this communication, we show, using somatic cell hybridization to construct cells producing new combinations of alpha and L chains, that individual L chains probably can pair both covalently and non-covalently depending on the alpha chain.

Animals↗

Structure of a germline rabbit immunoglobulin V kappa-region gene: implications for rabbit V kappa-J kappa recombination.

Rabbit kappa-immunoglobulin chains exhibit diversity in the number of amino acids between the invariant residues Cys 88 and Phe 98; this length diversity is formally similar to that found in the human and mouse heavy chain systems, in which it results from interposition of the D element between V and J. To explore the molecular basis for this length diversity in rabbit kappa-chains we have determined the nucleotide sequence of a rabbit germline V kappa immunoglobulin gene. The spacing between the 7-mer and 9-mer signal elements of this gene suggest that it could recombine with J kappa without a D element. We discuss alternative explanations for the length diversity of rabbit kappa-chains.

Amino Acid Sequence↗

IgA polymorphism in mice: NZB and BALB/c mice produce two forms of IgA.

There are two different forms of mouse IgA immunoglobulins, one in which light chains are disulfide-linked to each other (IgAL-L) and the second where light chains are linked to heavy chains (IgAH-L). IgA myeloma proteins from BALB/c mice are IgAL-L and those from NZB are IgAH-L. To determine whether these two forms of IgA represent allotypic or isotypic variants, we purified serum IgA and prepared IgA-secreting somatic cell hybrids from mitogen-stimulated BALB/c and NZB mice and determined the pattern of light chain linkage. It was found that each strain produces both forms of IgA and that both forms share the allotypic determinants characteristic of the mouse strain.

Animals↗

Medical consequences of the New Mexico State Penitentiary riot.

On February 2, 1980, a riot broke out among the 1,157 inmates at the New Mexico State Penitentiary and 139 people were injured. Of these, 33 died. Survivors had a variety of problems resulting from blunt or penetrating trauma, acute intoxication with drugs, or smoke inhalation. Fourteen percent of the casualties arrived at local hospitals in serious or critical condition. A study of the injury patterns revealed a significant difference (P less than .001) in the incidence of severe head trauma in those who had died compared to those who survived. Most of the seriously or critically ill survivors suffered from acute poisoning or from penetrating wounds.

Burns, Inhalation↗

Uteroglobin production by cultured rabbit uterine epithelial cells.

Uteroglobin (UG) is a secretory protein produced by the rabbit endometrium and its production is increased during cell differentiation which occurs during early pregnancy or pseudopregnancy. In the present study, the optimal conditions for UG production by rabbit endometrial epithelial cells in culture were examined. Metabolic labeling studies showed the incorporation of [35S]methionine into UG molecules by the endometrial epithelial cells in culture. Accumulation of UG in culture media was linear for at least a period of 24 h. These cells do not catabolize exogenously added radiolabeled UG. Endometrial cells obtained from virgin female rabbits at different times after the administration of human CG (hCG) and put in culture were found to make different amounts of UG. The maximal UG production was found in cells taken from pseudopregnant rabbits 4 days after hCG administration. Cycloheximide (28 micrograms/ml) inhibited the production of UG by the cells in culture whereas actinomycin-D (5 micrograms/ml) and cordycipin (50 micrograms/ml) increased its production. Inhibition of DNA synthesis by hydroxyurea (10(-3) M) did not affect the UG production. The production of UG was significantly less when cells were cultured on attached or floating collagen gels as compared to cells grown on plastic Petri dishes. The amino acid content of Ham's F-12 medium was shown to be adequate for maximal UG production; lowering this amino acid concentration decreased the amount of UG accumulated in the medium over a 24-h period. Increasint the number of cultured cells per dish resulted in an increased UG production per cell.

Animals↗

NZB cells actively interfere with the establishment of tolerance to BGG in radiation chimeras.

We report experiments designed to determine if the tolerance defect in NZB mice results from i) failure of NZB cells to become tolerant, or ii) the ability of NZB cells to interfere actively with the development of tolerance. The results indicate that NZB cells are primed by the tolerogen itself and actively interfere with the expression of tolerance by DBA/2 cells, which normally can be rendered tolerant.

Animals↗

An allotype linked gene that is associated with a negative or very low anti-phosphorylcholine response (PC) phenotype in wild mice (CNV).

In contrast to most inbred and wild mice, a population of wild mice recently isolated from a farm in Centreville, MD, and designated CNV produced no anti-phosphorylcholine (PC) antibodies (less than 1 microgram/ml) in response to immunization with the PC antigen Streptococcus pneumoniae (R36A) and gave 9 to 36 micrograms/ml anti-PC response to PC-KLH at 14 days after immunization. When another carbohydrate antigen, namely, bacterial levan, was used, CNV mice all gave high antibody titers. When CNV (PC-) mice were bred to inbred C.B20 (PC+) mice, 82% of the F1 and 76% of the F2 hybrids were surprisingly non-responders (PC-), which suggested that PC- gene(s) of CNV origin dominated the response to these antigens. The 18% PC+ phenotype in the F1 hybrids indicated possible heterozygosity of the PC genes controlling the PC- response in the CNV mice. Genetic studies on CNV mouse No. 378 supported this possibility. Analysis of the F2 data strongly suggest that two genes determined the PC- response, one of which was closely linked to the Igh-C allotype locus (chromosome 12). Hypothetically, we propose that CNV mice have two genes that cooperate but that sometimes act independently to express the PC- phenotype. Surprisingly, when F1 mice giving PC- phenotypes were back-crossed to C.B20, very few mice (18%) were PC-. This indicated that the PC- determining genes of CNV origin were not able to dominate immune responses in the presence of a larger number of C.B20 genes. This kind of expression may be regulated by other factors, such as clonotype competition and clonal dominance.

Animals↗