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R Freund

Publications and source records attributed to R Freund.

At least 37 records · Page 2Linked to original sources

Regulation of mitochondrial energy generation in health and disease.

In mammalian cytochrome c oxidase (COX) three of the ten nuclear coded subunits (VIa, VIIa, VIII) occur in tissue-specific isoforms. The isoform distribution, however, varies in liver and heart of different species. Subunit VIII is different in liver and heart of bovine, dog, rat and chicken, but identical in human (liver-type) on one hand, and sheep, rabbit and rainbow trout (heart-type) on the other hand, as determined by N-terminal sequencing. Two moles of trinitrophenyl-ATP bind to monomeric COX from bovine heart and one to COX from bovine liver with dissociation equilibrium constant (Kd) values of about 3 microM. One binding site at the heart enzyme is blocked by a monoclonal antibody to subunit VIa-H. ATP (and/or ADP) interact with COX at two or three high-affinity binding sites, as shown by titration of the spectral changes of COX. Isolated COX from bovine heart was reconstituted with variable intraliposomal ATP/ADP ratios. By measuring the RCR (respiratory control ratio) and RCRVal (related to the valinomycin-respiration), which is a direct measure of the H+/e(-)-stoichiometry (Wilson and Prochaska, Arch. Biochem. Biophys. 282 (1990) 413-420), almost complete inhibition of the proton pump activity of COX by high intraliposomal ATP concentrations was found. The vectorial of protons for the formation of water, however, appears to be unaffected by nucleotides. This regulatory mechanism is assumed to have physiological significance for thermogenesis in muscle at rest. COX of fibroblasts from patients suffering from Leigh's syndrome, which is associated with a decreased COX activity, are suggested to have an incompletely assembled enzyme complex. This suggestion is further corroborated by the higher temperature-sensitivity of the enzyme when compared with COX from normal control fibroblasts. Defective regulation of COX via nuclear coded subunits is also proposed to cause mitochondrial diseases.

Amino Acid Sequence↗

Species-specific expression of cytochrome c oxidase isozymes.

Cytochrome c oxidase was isolated from livers and hearts of sheep, dog and rabbit, and the polypeptide composition was analyzed by two different SDS-PAGE separation systems. The gels were blotted on PVDF-membranes and the N-terminal amino acid sequences of the tissue-specific subunits VIa, VIIa and VIII were determined in a protein sequencer. Except for subunit VIIa from rat, subunits VIa and VIIa from all investigated mammals are tissue-specific expressed in liver and heart. In contrast, subunit VIII is clearly different in liver and heart of bovine, dog and rat, but identical in liver and heart of human (liver-type), sheep, rabbit and also in rainbow trout (heart-type). The data suggest a strong species-specific variation of the regulatory properties of cytochrome c oxidase in different tissues.

Amino Acid Sequence↗

Genetic and structural analysis of a virulence determinant in polyomavirus VP1.

The LID strain of polyomavirus differs from other laboratory strains in causing a rapidly lethal infection of newborn C3H/Bi mice. This virulent behavior of LID was attenuated by dilution, yet at sublethal doses LID was able to induce tumors at a high frequency, like its parent virus PTA. By constructing and assaying LID-PTA recombinant viruses and by DNA sequencing, the determinant of virulence in LID was mapped to the major viral capsid protein, VP1. The VP1s of LID and PTA differed at two positions: at 185, LID has phenylalanine and PTA has tyrosine, and at 296, LID has alanine and PTA has valine. Results obtained with viruses constructed by site-directed mutagenesis showed that alanine at position 296 is sufficient to confer a fully virulent phenotype regardless of which amino acid is at position 185. However, with valine at position 296, an effect of phenylalanine at position 185 is apparent, as this virus possesses an intermediate level of virulence. A crystal structure of polyomavirus complexed with 3'-sialyl lactose previously indicated van der Waals contacts between the side chain of valine 296 and the sialic acid ring (T. Stehle, Y. Yan, T. L. Benjamin, and S. C. Harrison, Nature [London] 369:160-163, 1994). When this interaction was modeled with alanine, these contacts were greatly reduced. Direct confirmation that the substitutions in VP1 affected receptor binding was obtained by studying virus hemagglutination behavior. The ensemble of results are discussed in terms of the idea that a lower affinity of the virus for its receptor can result in more rapid spread and increased pathogenicity.

Animals↗

Identification of tissue-specific isoforms for subunits Vb and VIIa of cytochrome c oxidase isolated from rainbow trout.

Cytochrome c oxidase was isolated from heart and liver of rainbow trout (Salmo gairdnerii). SDS/PAGE analysis showed the presence of 11 different polypeptide subunits in the fish enzyme. The nuclear-coded subunits IV, Va, Vb, VIc, VIIa, VIIc and VIII could be identified by their N-terminal amino acid sequences. The mammalian subunits VIa and VIIb appear to be absent (or blocked at the N-terminal) in cytochrome c oxidase from trout. For subunit Vb, two polypeptides of different electrophoretic mobilities were found which differed in their N-terminal sequences, and represent a new pair of cytochrome-c-oxidase subunit isoforms, not found in mammalia. Both isoforms of subunit Vb were found in cytochrome c oxidase from heart and liver, but at different ratios. Subunit VIIa also seemed to occur in different isoforms, whereas subunit VIII had the same N-terminal amino acid sequence in cytochrome c oxidase of liver and heart, similar to the human-type subunit but different from rat, bovine and chicken.

Amino Acid Sequence↗

Host range and cell cycle activation properties of polyomavirus large T-antigen mutants defective in pRB binding.

We have examined the growth properties of polyomavirus large T-antigen mutants that are unable to bind pRB, the product of the retinoblastoma tumor suppressor gene. These mutants grow poorly on primary mouse cells yet grow well on NIH 3T3 and other established mouse cell lines. Preinfection of primary baby mouse kidney (BMK) epithelial cells with wild-type simian virus 40 renders these cells permissive to growth of pRB-binding polyomavirus mutants. Conversely, NIH 3T3 cells transfected by and expressing wild-type human pRB become nonpermissive. Primary fibroblasts from mouse embryos that carry a homozygous knockout of the RB gene are permissive, while those from normal littermates are nonpermissive. The host range of polyomavirus pRB-binding mutants is thus determined by expression or lack of expression of functional pRB by the host. These results demonstrate the importance of pRB binding by large T antigen for productive viral infection in primary cells. Failure of pRB-binding mutants to grow well in BMK cells correlates with their failure to induce progression from G0 or G1 through the S phase of the cell cycle. Time course studies show delayed synthesis and lower levels of accumulation of large T antigen, viral DNA, and VP1 in mutant compared with wild-type virus-infected BMK cells. These results support a model in which productive infection by polyomavirus in normal mouse cells is tightly coupled to the induction and progression of the cell cycle.

3T3 Cells↗

Defect in entry and altered pathogenicity of a polyoma virus mutant blocked in VP2 myristylation.

We have examined effects of mutations of the minor capsid proteins VP2 and VP3 of polyoma virus. Infection of cells by mutants blocked in expression of either VP2 or VP3 by alterations of their initiator methionine codons led to the rapid selection of wild-type revertants. This reversion suggests a strong, if not absolute, requirement for both proteins in virus growth. A mutant virus, VP2*, in which alanine was substituted for glycine-2, expressed a nonmyristylated form of VP2 that was incorporated into virions. Studies of VP2* revealed a 15- to 20-fold lower specific infectivity and a delay in growth in both primary and established mouse cells compared to wild-type virus. Analysis of the growth delay indicated a defect in an early step of infection, at or prior to uncoating. Synthesis of viral DNA and VP1 was delayed by about 9 hr in mutant compared to that in wild-type infected cells. No evidence was obtained for an effect on either virus assembly (encapsidation) or stability of virions. Infection of mice by the VP2* mutant virus resulted in attenuated virus replication and tumor induction which were much more severely affected following intranasal inoculation than intraperitoneal inoculation.

3T3 Cells↗

Pyvs: a dominantly acting gene in C3H/BiDa mice conferring susceptibility to tumor induction by polyoma virus.

Results in a previous report established the presence of dominant genetic factor(s) in C3H/BiDa mice which contributed to the unusually high susceptibility of this strain to polyoma virus-induced tumors (Freund et al. (1992) Virology 191, 724-731). Here we show that C57BR/cdJ mice, while identical to C3H/BiDa at the H-2 locus, are almost completely lacking in susceptibility. Analysis of crosses between these two H-2k strains has shown that susceptibility is due to a single dominant autosomal gene, designated Pyvs. On an H-2k background, Pyvs acts in a highly penetrant manner to confer susceptibility to induction of a broad range of tumors by the virus. Analysis of F1 mice between C3H/BiDa and the highly resistant C57BL/6 (H-2b) strain shows that Pyvs can partially overcome the immunologically mediated resistance associated with an H-2b haplotype. Pyvs does not encode cell receptors for the virus, nor does it affect levels of virus replication or anti-viral humoral responses in the host. Studies with early passage embryo fibroblasts in culture show that Pyvs does not affect intracellular events essential for either productive infection or cell transformation by the virus. Pyvs thus determines a generalized susceptibility of the host to polyoma-induced tumors but apparently does not act at the level of target cells for tumor induction.

3T3 Cells↗

Polyoma-induced neoplasms of the mouse adrenal medulla. Characterization of the tumors and establishment of cell lines.

BACKGROUND: Pheochromocytomas that are usually noradrenergic arise commonly in the adult rat adrenal medulla. The widely studied PC12 cell line, that is representative of these rat adrenal tumors, is also noradrenergic. The reasons for the absence of epinephrine production by most rat pheochromocytoma cells are unknown, and there are currently no adrenergic adrenal medullary cell lines. Pheochromocytomas are rare in mice. EXPERIMENTAL DESIGN: Tumors induced by polyoma virus in the adrenal medullas of postnatal mice were studied immunocytochemically for catecholamine biosynthetic enzymes in order to determine how their profiles of catecholamine production compared with those of rat pheochromocytomas. Clonal cell lines were established from a representative tumor and were evaluated for responsiveness to agents known to affect the development and function of normal and neoplastic rat chromaffin cells. RESULTS: Although adrenal medullary cells from normal rodents produce epinephrine before birth, polyoma-induced mouse adrenal tumor cells are immature or poorly differentiated. They synthesize norepinephrine, but not epinephrine, which during normal development is produced later than norepinephrine. They also produce relatively large quantities of dihydroxyphenylalanine, suggesting an abnormality of catecholamine biosynthesis such that tyrosine hydroxylase is not rate-limiting. Secretory granules are sparse, as demonstrated by electron microscopy or by staining for chromogranin A, and catecholamine stores are low. Further, the tumor cells appear to be phenotypically unstable, as judged from heterogeneous staining for tyrosine hydroxylase even in early passage, twice-cloned cell lines. Tumor cell morphology and catecholamine profiles appear to be unaffected or minimally affected by nerve growth factor, forskolin or dexamethasone, which are known to affect normal or neoplastic rat chromaffin cells. However, tumors formed after subcutaneous injection of cell lines into mice show up to a 10-fold increase in catecholamine stores, suggesting that the cells are subject to some forms of regulation. The cloned cell lines do not produce detectable polyoma virus, but express all three viral T antigens, including a characteristic, truncated form of large T. CONCLUSIONS: The findings suggest that the process of neoplastic transformation and/or the presence of polyoma virus T antigens results in suppression of the adrenergic phenotype in mouse adrenal chromaffin cells. T antigens might therefore be useful as tools for studying mechanisms that regulate the differentiation and maturation of chromaffin cells in normal and neoplastic states. Furthermore, although polyoma virus cannot be readily used to produce adrenergic cell lines from the mouse adrenal medulla, the lines that are produced might substitute for PC12 cells in some types of studies that require a mouse model.

Adrenal Gland Neoplasms↗

Polyoma virus middle T is essential for virus replication and persistence as well as for tumor induction in mice.

A mutant strain of polyoma virus encoding a truncated middle T protein has been studied for its ability to replicate and induce tumors following inoculation into newborn mice. Virus replication in the acute period prior to expected onset of tumors as well as persistence of virus in older animals were followed. The mutant virus proved to be defective in replication and persistence and failed to induce tumors. These results demonstrated that middle T plays an essential role in productive viral infection in the animal. Since the mutant virus encodes normal large and small T proteins, the results also indicate that functions associated with these T antigens, including large T binding of the retinoblastoma tumor suppressor gene product and the ability to immortalize, are insufficient to cause development of tumors in this system.

Aging↗

Polyoma tumorigenesis in mice: evidence for dominant resistance and dominant susceptibility genes of the host.

We have determined the tumor responses of nine inbred mouse strains and of two F1 hybrids following inoculation with polyoma virus. The results showed wide variations in the frequencies of mice developing tumors. Correlation with H-2 haplotype were evident. C3H/BiDa mice of H-2k type were fully susceptible, while C57BL/6 mice of H-2b type were completely resistant. DBA/2 and BALB/c mice, both H-2d, were of low susceptibility. Contributions of the major histocompatibility complex were demonstrated using pairs of H-2 congenic mice. Substitution of H-2k on either a BALB/c or a C57BL/10 background resulted in an increase in the frequencies and kinds of tumors induced. Susceptibilities of BALB and C57BL mice bearing the H-2k haplotype were still well below those of C3H/BiDa mice, however. Crosses of C3H/BiDa with BALB/c or BALB.K (H-2k) produced F1s that were of moderate and full susceptibility, respectively. These results indicate two distinct classes of host genes, one at the H-2 locus where different alleles confer varying degrees of resistance and the other a dominant susceptibility gene(s) carried in C3H/BiDa mice.

Animals↗

Heterogeneity in state and expression of viral DNA in polyoma virus-induced tumors of the mouse.

We have examined the state and expression of polyoma viral DNA in representative epithelial and mesenchymal tumors, using a combination of biochemical and in situ methods. Results showed wide variations among tumor types and also in different regions within individual tumors, with respect to copy number of viral DNA, presence or absence of deletions, and expression of early and late viral proteins. Epithelial tumors showed the greatest heterogeneity. High copy free viral DNA, frequently with deletions, was found in all such tumors. A portion of free viral DNA was recoverable as transcriptionally active minichromosomes. Three distinct subpopulations of cells were distinguished by in situ analyses. Type 1 cells showed high copy free viral DNA and expressed the major viral capsid protein VP1; these cells appeared to be at various stages of productive (lytic) viral infection. Some productively infected cells were able to undergo mitosis; in a portion of these cells, VP1 was found in close association with the mitotic spindle. Type 2 cells contained high copy free DNA but did not express VP1; by some unknown mechanism, these cells manifest a post-replication block to late gene expression and lytic infection. Type 3 cells contained only low copy, presumably integrated, viral DNA and expressed no VP1; they thus resemble cells transformed in vitro by the virus. Epithelial tumors contained variable mixtures of these subpopulations, while mesenchymal tumors were composed of Type 3 cells only. Differences in virus-cell interactions are discussed in terms of their possible implications in tumor development.

Animals↗

Functional asymmetry of the regions juxtaposed to the membrane-binding sequence of polyomavirus middle T antigen.

The functional importance of the two clusters of positively charged amino acids which flank the hydrophobic membrane-anchoring sequence of polyomavirus middle T (mT) protein has been investigated by using site-directed mutagenesis. A clear asymmetry was apparent. No effect on transformation was seen following multiple alterations or complete removal of the cluster at the carboxyl end of the protein. In contrast, a single substitution replacing the first arginine amino terminal to the hydrophobic stretch with glutamic acid, but not with lysine, histidine, or methionine, produced a partially transformation-defective mutant with a novel phenotype. This mutant failed to confer anchorage-independent growth on F111 established rat embryo fibroblasts but induced foci with altered morphology compared with wild-type mT. Biochemical studies on this mutant revealed that F111 clones expressing levels of mutant mT equivalent to those of wild-type controls showed a 65% reduction in pp60c-src activation and an 87% reduction in mT-associated phosphatidylinositol 3-kinase activity. However, F111 clones expressing seven times more mutant mT than did wild-type controls showed equal or greater levels of kinase activities yet remained incompletely transformed. Possible mechanisms involving this transformation-sensitive region of mT are discussed.

Animals↗

Separation of immortalization from tumor induction with polyoma large T mutants that fail to bind the retinoblastoma gene product.

The mouse polyomavirus encodes a tumor-suppressor gene inactivator in its large T protein and a proto-oncogene activator in its middle T protein. We have used site-directed mutagenesis to selectively inactivate the former function without affecting the latter. Two mutant viruses were constructed to encode altered large T proteins that fail to bind the retinoblastoma tumor-suppressor gene product pRB, along with normal small and middle T proteins. The pRB-binding mutants proved to be defective in immortalization of primary rat embryo fibroblasts by a variety of tests. Yet they proved capable of transforming both primary and established fibroblasts in culture. Most importantly, the inability of these mutants to bind pRB had little effect on their ability to induce tumors in mice. We conclude that induction of multiple tumor types in this system does not depend on large T-pRB interactions but rather on middle T-dependent pathways. In addition, the ability of this virus to immortalize cells in culture is not essential to its ability to induce tumors in the animal.

Animals↗

Changes in frequency, morphology, and behavior of tumors induced in mice by a polyoma virus mutant with a specifically altered oncogene.

Alterations in the tumor-inducing ability of a polyoma virus mutant encoding a partially defective middle T oncogene have been investigated. The mutant middle T associates with and activates the tyrosine protein kinase pp60c-src normally but does not promote binding of a second enzyme, phosphatidyl-inositol 3-kinase. Compared with the wild type virus, this mutant shows an altered and reduced ability to induce tumors after inoculation into newborn mice, as judged by the following criteria: lower frequency of tumors, reduced morbidity and increased survival times of host mice, changes in the spectrum of tumor types, and altered morphologic properties of tumors at several target organ sites. These results indicate an important role of changes in 3-phosphoinositide metabolism in induction of a variety of tumors in this experimental system.

Animals↗

Prediction of total body lipid from total body water in rats. Part 1. Relations between directly measured major body components.

Aimed to the construction of a prediction equation for estimations of lipid content from animal water content body composition was determined by whole body analysis of male rats (1) given access, ad libitum, to a commercial standard diet (n = 144; ranging from 60 to 600 g in weight, and from the 4th to the 34th week of age), and (2) showing striking variations with regard to nutritional state, dietary history, enlarged fat deposition, genetic origin, intestinal microbial status, and advanced age (n = 75). It was shown that a unique coefficient of water content in lipid-free body mass does not exist. The results of statistical analysis for the grouped values of percentage body dry matter (x) and percentage body lipid (y) indicate that the latter can be estimated accurately from body water content directly determined by the use of the quadratic regression equation y = -0.2864 x +0.01615 x2 with a standard deviation of the procedure Sy = +/- 1.40. This prediction equation is valid for a wide developmental span even under highly different experimental states. Differences between the calculated body lipid contents vs. analytically determined values are smaller than by using a linear regression equation or coefficient(s) of hydration of lipid-free body mass.

Aging↗

Prediction of total body lipid from total body water in rats. Part 2. In vivo estimation of total body lipid by tritium water dilution.

Body composition data estimated for normal young, normal adult, and adult obese Wistar rats by a tritiated water (THO) dilution procedure (b. wt. range 119-237 g, n = 31; 305-597 g, n = 43; 274-381 g, n = 6) were compared with the results of whole body analysis. As for the predicted total body lipid (TBL), the content was calculated from the virtual THO-dilution space estimated by a simple micro-method and a regression equation between TBL [%] and DM [%] (dry matter) content (Part 1. Relations between directly measured major body components. Nahrung 35 (1991) 581. Due to different degrees of overestimations in the animal groups examined, the THO-space can be corrected via subtraction of 3.8%, 2.2% and 1.1% in the sequence young, obese, and adult groups. The derived TBL [%] data show a non-significant deviation of less than 1 g/100 g b. wt. in comparison to the three group means after direct lipid determinations. In the best case, i. e. after the additional elimination of extremely overestimated values for total body water (outliers) the combined tritium-derived lipid values (y) are correlated with the lipid data obtained analytically (x), both as proportion of the body weight, by the regression equation y = 0.848 + 0.963 x, r = 0.985, Sy.x = 1.77, n = 58. For a group of young rats (n = 14) after a pre-experimental supplementation with a sucrose solution, TBL values, not significantly different from analytically determined ones, could be calculated without any corrections.

Animals↗

Polyomavirus tumor induction in mice: effects of polymorphisms of VP1 and large T antigen.

By testing recombinants between "high tumor" (inducing a high incidence of tumors) and "low tumor" (inducing a low incidence of tumors) strains of polyomavirus, we have previously shown that the key determinant(s) for induction of a high tumor profile resides in coding regions of the high tumor strain (R. Freund, G. Mandel, G. G. Carmichael, J. P. Barncastle, C. J. Dawe, and T. L. Benjamin, J. Virol. 61:2232-2239, 1987). Three single-amino-acid differences between the PTA (high tumor) and RA (low tumor) virus strains have now been identified by DNA sequencing, one each in the large T antigen, in the region common to the middle and small T antigens, and in the major capsid protein VP1. Further tests of appropriate recombinants and oligonucleotide-induced mutants show that VP1 of PTA is the major determinant for induction of a high tumor profile, including all tumors of epithelial origin. The differential effect of the VP1s of PTA and RA on the tumor profile is discussed in terms of a likely contribution of the polymorphic region of VP1 to binding of receptors and infection of different cell types in the animal. The polymorphism in the large T antigen has a more restricted action, which is seen only when tested in virus carrying the VP1 type of PTA; the PTA large T antigen then promotes more rapid growth of tumors of salivary gland and thymus than the RA large T antigen.

Antigens, Polyomavirus Transforming↗

Polyomavirus replication in mice: influences of VP1 type and route of inoculation.

Patterns of polyomavirus replication and spread have been studied following inoculation of virus into newborn mice. Levels of virus replication in different tissues were followed in situ by using whole mouse section blots and immunoperoxidase staining for the major capsid protein VP1, as well as by tissue extraction and direct quantitation of viral DNA and infectious virus. Patterns of replication and spread were compared between the "high tumor" strain (inducing a high incidence of tumors) PTA and and the "low tumor" strain (inducing a low incidence of tumors) RA, following different routes of inoculation. The ability to induce a high tumor profile correlated with the ability to establish disseminated productive infection, with the kidney as a major site of amplification. Furthermore, results with PTA-RA recombinant viruses and site-directed mutants showed that the VP1 specificity of PTA, demonstrated earlier to be a critical determinant for induction of a high tumor profile (R. Freund, A. Calderone, C. J. Dawe, and T. L. Benjamin, J. Virol. 65:335-341, 1991), is also critical for amplification in the kidney and for establishment of disseminated infections.

Animals↗