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Physiological consequences of mitochondrial antibiotic-resistant mutations in Paramecium: growth-rates, cytochromic defects and cyanide-insensitive respiration of mutant and erythromycin-treated wild-type strains.

A set of mitochondrial antibiotic-resistant mutants of Paramecium have been analyzed with respect to their growth-rates, cytochromic content and respiratory properties. The mutants could be arranged in a continuous series ranging from strains equivalent to wild-type to severely affected ones; affected strains display longer generation times, reduced amount of cytochrome oxidase and very high levels of cyanideinsensitive respiration. Perfect phenocopies of the mutants were obtained by treating wild-type cells with low concentrations of erythromycin suggesting that the mutations exert their pleiotropic effect by perturbating mitochondria protein synthesis in agreement with the idea that these mutations affect the mitochondrial ribosomes. In the mitochondria of some of the mutants, electrons can be channelled with equal efficiency into the "classical" cyanide-sensitive pathway and the alternate cyanide insensitive (and SHAM-sensitive) one, providing direct demonstration of the branching of these two respiratory pathways. In the absence of any added inhibitor, however, electrons tend to be channelled in the cyanide-sensitive pathway. All the physiological data fit perfectly the genetic data concerning the "stability" of the various mutations in "mixed mitochondrial populations", i.e., markers that were known to be strongly counter-selected with respect to wild-type in such populations correspond to severely affected strains, while markers that were known to be "stable" correspond to "healthy" strains. A more quantitative analysis of the data shows that that there is little or no "complementation" between wild-type and mutated mitochondria in mixed cells indicating a high extent of functional autonomy of mitochondria in Paramecium.

Animals↗

Molecular analysis by electron microscopy of the removal of psoralen-photoinduced DNA cross-links in normal and Fanconi's anemia fibroblasts.

The induction and fate of psoralen-photoinduced DNA interstrand cross-links in the genome of Fanconi's anemia (FA) fibroblasts of complementation groups A and B, and of normal human fibroblasts, were investigated by quantitative analysis of totally denatured DNA fragments visualized by electron microscopy. 8-Methoxypsoralen (5 x 10(-5) M) interstrand cross-links were induced as a function of the near ultraviolet light dose. With time of postexposure incubation, a fraction of interstrand cross-links disappeared in all cell lines. However, 24 h after treatment, this removal was significantly lower in the two FA group A cell lines examined (34-39%) than in the FA group B and normal cell lines (43-53 and 47-57%, respectively). These data indicate that FA cells are at least able to recognize and incise interstrand cross-links, as normal cells do, although group A cells seem somewhat hampered in this process. This is in accord with data obtained on the same cell lines using another biochemical assay (D. Papadopoulo, D. Averbeck, and E. Moustacchi. Mutat. Res., DNA Repair Rep., 184: 271-280, 1987). Since the fate of cross-links in FA constituted a controversial matter, it is important to stress that two different methodologies applied to genetically well defined cell lines led to the same conclusions.

Anemia, Aplastic↗

Cytomegalovirus infection in infancy: virological and immunological studies.

Immunological and virological studies on 18 infants with cytomegalovirus (CMV) infection were performed. Eleven of these infants were studied on multiple occasions over a period of 1 year. The patients were divided into three clinical groups based on the probable time of infection and the resulting variation in clinical presentation. General parameters of cell-mediated immunity as determined by E-rosette formation and lymphocyte proliferative responses to mitogens and antigens were found to be normal. Quantitation of CMV excretion in urine, CMV-specific immunofluorescent (IF) and complement-fixing (CF) antibody titres and CMV-specific cell-mediated immune responses were done on all patients at approximately monthly intervals. Throughout the study period all patients continued to excrete CMV despite the presence of high antibody titres to the virus. CMV-specific lymphocyte proliferative responses were absent or diminished in 15 of the 18 patients. The immunological and virological status of all patients was similar regardless of the clinical manifestation of infection.

Antibodies, Viral↗

Binding of monoclonal antibodies that inhibit spleen colony formation to leukemic cell lines.

Clonogenic tumor cells and normal stem cells share the property of extensive proliferative potential. Normal stem cells are under stringent growth restraint and respond to appropriate differentiation signals, whereas tumor stem cells have lost the ability to respond normally to these controls. In an attempt to define cell surface molecules involved in the control of hemopoietic cell proliferation and differentiation, we have produced 5 monoclonal antibodies against antigens held in common between hemopoietic stem cells and the Abelson virus-induced pre-B-lymphoma cells from which they were derived. Four of these monoclonal antibodies produced greater than 90% reduction of spleen colony-forming cells, whereas the other bound to a subpopulation (60 to 70%) of spleen colony-forming cells at plateau values. The expression of antigens recognized by these and two other anti-stem cell monoclonal antibodies has been shown to correlate with the differentiation status of a panel of tumor cell lines, with greater expression being observed on cells more closely resembling the pluripotent stem cell than mature hemopoietic cells. Immunoperoxidase staining of bone marrow showed that these antigens are mainly expressed by monocytes and blast cells. Treatment of bone marrow cells with those antibodies which extensively inhibited spleen colony formation and with rabbit complement abolished the ability of progenitor cells to form colonies in soft agar. Quantitative absorption studies distinguished the antigens recognized by two of the anti-stem cell monoclonal antibodies from those detected by anti-H-2k 11-4.1 monoclonal antibody. These observations suggest that the antigens involved may play a role in the regulation of growth and differentiation of stem cells and undifferentiated leukemic cells.

Animals↗

Actin-associated proteins in motility and chemotaxis of Dictyostelium cells.

The amoeboid cells of Dictyostelium discoideum are amenable to a combined biochemical, genetic, and cell biological approach that can be focussed to the study of molecular interactions underlying the chemotactic responses of eukaryotic cells. In these responses the actin-based motility system is involved. This system is characterised in Dictyostelium cells by a large number and variety of regulatory proteins. Most of these proteins belong to families that are likewise represented in the cytoskeletons of higher eukaryotes including man. Elimination of some of these actin-binding proteins by chemical mutagenesis or gene disruption is being used to simplify the system by separating essential proteins from non-essential ones. These studies are complemented by the selection and analysis of mutants with altered motility or chemotaxis. Quantitative motion analysis of mutants is employed to establish a link between defects on the molecular level and alterations in cell behaviour. Dictyostelium cells respond to local stimulation by extending a newly formed leading edge towards a chemoattractant within less than a minute, thereby changing their polarity. The leading edge is formed by the recruitment of soluble proteins from the cytoplasm and their coassembly with actin into a complicated framework of microfilaments. Patterns of assembly are shown in this report for two proteins, the talin-like filopodin and coronin. Elucidation of the control mechanisms of this ordered assembly will provide the key for understanding the molecular processes responsible for a chemotactic response.

Actins↗

Bone marrow scintigraphy with technetium-99m anti-NCA-95 to monitor therapy in malignant osteopetrosis.

We report a case of a 2-mo-old girl with malignant osteopetrosis. Conventional radiological investigations of the skull and left hand showed the characteristic pattern of generalized sclerosis. Bone marrow immunoscintigraphy with 99mTc-labeled antibodies against nonspecific cross-reactive antigen (NCA) 95 was performed before and after bone marrow transplantation. Before transplantation, whole-body images showed bone marrow stores exclusively in the base of the skull. The rest of the skeleton did not reveal any hematopoietic activity. The liver and spleen showed increased antibody uptake as expected in extramedullary hematopoiesis. Repeat scintigraphy after bone marrow transplantation from her haploidentical father demonstrated an almost completely normalized tracer distribution corresponding to her clinical and hematological improvement. Bone marrow immunoscintigraphy appears to be an ideal complement to radiograph diagnostics in malignant osteopetrosis. In primary diagnosis, scintigraphy demonstrates the quantitative extent of bone marrow displacement. It also proves an ideal tool in monitoring the effectiveness of therapy after bone marrow transplantation.

Antibodies, Monoclonal↗

Salmon silk genes contribute to the elucidation of the flavone pathway in maize (Zea mays L.).

We utilized maize (Zea mays L.) lines expressing the salmon silk (sm) phenotype, quantitative trait locus analysis, and analytical chemistry of flavone compounds to establish the order of undefined steps in the synthesis of the flavone maysin in maize silks. In addition to the previously described sm1 gene, we identified a second sm locus, which we designate sm2, located on the long arm of maize chromosome 2. Our data indicate that the sm1 gene encodes or controls a glucose modification enzyme and sm2 encodes or controls a rhamnosyl transferase. The order of intermediates in the late steps of maysin synthesis was established as luteolin --> isoorientin --> rhamnosylisoorientin --> maysin.

Chromatography, High Pressure Liquid↗

Cytotoxicity of human serum for Leishmania donovani amastigotes: antibody facilitation of alternate complement pathway-mediated killing.

Mechanisms that mediate recovery from leishmanial infection have not been fully characterized but are generally believed to involve interactions between T lymphocytes and macrophages. A major role for serum-mediated effector mechanisms in the protection of humans from reinfection with Leishmania, however, has not been ruled out. In this report, amastigotes of L. donovani were incubated with dilutions of serum from normal subjects and from patients with kala-azar. Normal serum was cytotoxic for parasites at a dilution of greater than or equal to 1:20. Cytotoxicity did not occur in the presence of EDTA, was abolished by heating serum to 56 degrees C for 30 min, and was not diminished by prior adsorption of normal serum with parasites at 0 degree C. Killing proceeded normally in the presence of magnesium-ethylene glycol-bis(beta-aminoethyl ether)-N, N-tetraacetic acid, however, and was fully effected by C2-deficient serum. These studies indicated that killing of amastigotes, unlike that of promastigotes, was mediated via the alternate pathway of serum complement. In further studies, cytotoxicity of normal serum was enhanced three- to fivefold by factors in patient serum. This enhanced cytotoxicity also proceeded via the alternate complement pathway. Factors that enhanced cytotoxicity were characterized as parasite-specific immunoglobulin G: they eluted with immunoglobulin G on column chromatography, were adsorbed by immobilized staphylococcal protein A, and were not removed from the parasite surface by extensive washing. Thus, infection of individuals with L. donovani resulted in the production of a new, qualitatively and quantitatively distinct immune mechanism directed against the amastigote form of the parasite, namely, antibody-directed, alternate complement pathway-mediated cytotoxicity. These results provide a mechanistic framework for a role of humoral factors in human resistance to reinfection with L. donovani.

Animals↗

Activation and fragmentation of the third (C3) and the fourth (C4) components of complement: generation and isolation of physiologically relevant fragments C3c and C4c.

The degree of the activation and fragmentation of C4 and C3, including chain structure of the activation products, was evaluated by SDS-PAGE analysis of the C4 or C3 antigens that were withdrawn from the reaction media with appropriate immunoadsorbent beads. Full activation of C4 and C3, and subsequent quantitative conversion of C4b into C4c, and C3b into iC3b took place in fresh NHS after the activation of complement with both aggIgG and CVF. For complete conversion of iC3b to C3c erythrocytes carrying the C3b receptor were added to the already activated serum. Both C4c and C3c were isolated by a 2-step procedure involving (i) an adsorption to and (ii) electrophoretic desorption from the respective immunoadsorbent beads.

Complement Activation↗

Density distribution, characterization, and comparative aspects of the major serum lipoproteins in the common marmoset (Callithrix jacchus), a New World primate with potential use in lipoprotein research.

Qualitative, quantitative, and comparative aspects of the serum lipoprotein profile in the Common marmoset (Callithrix jacchus), a New World primate, are described. Density gradient ultracentrifugation was used to evaluate lipoprotein distribution and to establish criteria for isolation of discrete molecular fractions. The major lipoprotein classes banded isopycnically on the gradient with the following hydrated densities: VLDL, d less than 1.017 g/mL; LDL, d = 1.027--1.055 g/mL; HDL fraction I, d = 1.070--1.127 g/mL; and HDL fraction II, d = 1.127--1.156 g/mL. Electrophoretic, immunological, and electron microscopic analyses attested to the purity of these fractions: the characteristics of each were assessed by chemical analysis, electron microscopy, immunological techniques, and polyacrylamide gel electrophoresis of their protein moieties. Marmoset VLDL and LDL were closely akin to those of man in size and chemical composition, although the former were richer in triglyceride; electrophoretic and immunological data showed the major protein component of VLDL and LDL to be a counterpart to human apo-B. The two HDL subfractions, i.e., HDL-I and HDL-II, corresponded in size and chemical composition to human HDL2 and HDL3, respectively, although slight differences in neutral lipid content were detected. By immunological and electrophoretic criteria, the major apolipoprotein of marmoset HDL was analogous to human apo-AI. In contrast, marked dissimilarities were evident in the complements of low molecular weight, tetramethylurea-soluble polypeptides of marmoset and human lipoproteins. Quantitatively, the human and marmoset lipoprotein profiles were not dissimilar, although HDL was the major class (approximately 50%); in fasting animals, serum concentrations of VLDL, LDL, and HDL were 50--90, 170--280, and 338--408 mg/dL, respectively. C. jacchus was distinct from man in displaying a greater proportion of its total HDL in the less dense (HDL-II) subfraction (marmoset HDL-I/HDL-II = approximately 4:1; human HDL2/HDL3 = approximately 1:3). These data indicate that, as an experimental animal for lipoprotein research, the Common marmoset combines the advantages of ready availability and maintenance with a serum lipoprotein profile which resembles, in many qualitative and quantitative aspects, that found in man.

Animals↗

Comparison of complement-dependent cytotoxicity and indirect immunofluorescence for enumeration of T-cell subpopulations in human peripheral blood.

The monitoring of T-lymphocyte subsets of recipients of organ grafts enables studies on immune reconstitution (after bone-marrow transplantation) and may predict graft rejection (after kidney transplantation). Quantitation of human peripheral T-lymphocyte subsets from healthy volunteers and from recipients of a bone-marrow graft by a complement dependent cytotoxicity (CDC) assay, based on the use of propidium iodide, and by an indirect immunofluorescence (IIF) technique has been compared using the monoclonal antibodies OKT3, OKT4 and OKT8. Except for OKT3 in healthy individuals--for which no significant difference was found between CDC and IIF--CDC detected significantly more cells of each subset than IIF. Furthermore, the CDC results indicated the presence of low numbers of OKT4+8+ cells in the peripheral blood of healthy individuals and--with higher numbers--following marrow transplantation. Results of depletion experiments, obtained by fluorescence activated cell sorting (FACS) for either OKT4 or OKT8, supported this conclusion. OKT4/OKT8 ratios were calculated from enumerations by the CDC assay and by the IIF assay and found to be linearly related, both in healthy persons and in marrow-graft recipients. Thus, the CDC assay is a reliable method for monitoring T-cell subsets, allowing detection of lymphocytes carrying low densities of membrane determinants.

Antibodies, Monoclonal↗

Variation in susceptibility of a human lymphoid cell line to immune lysis during the cell cycle. Lack of correlation with antigen density and complement binding.

Cultured human lymphoid cells RPMI 8866 at different stages of their growth cycle vary in their susceptibility to lysis by rabbit, human, and guinea pig complement activated by HL-A antibodies or heterologous antibodies directed to membrane antigens; cells in G(1) phase are the least sensitive to lysis. To investigate the cause of differential susceptibility of cells RPMI 8866 to lysis, the expression of HL-A determinants and the ability of cells to react with complement were investigated. No change was detected in the density of HL-A antigens on RPMI 8866 cells in synchronous growth as determined by quantitative microabsorption assays, isotopic antiglobulin tests and yields of soluble HL-A antigens. Cells did not vary during the growth cycle in their ability to interact with complement components and in their capacity to activate the complement system through the classical or alternate pathway. These data suggest that variability in lytic susceptibility is due to changes in the structure of the cell membrane or in its ability to repair complement induced damage at certain intervals during the cell cycle. Therefore, this cell line constitutes a useful model to investigate the final steps of the cytolytic reaction.

Animals↗

Activation of complement by tetrathyridia of Mesocestoides corti: enhancement by antibodies from infected mice and lack of effect on parasite viability.

Tetrathyridia of the cestode Mesocestoides corti were isolated from the peritoneal cavity of infected mice. The parasites activated guinea pig and mouse complement (C) in vitro by both the classical and alternative pathways as shown by quantitative C fixation and crossed immunoelectrophoresis. The ability of tetrathyridia to activate mouse C was enhanced by preincubating the parasites in serum obtained from mice infected with M. corti. Antibodies of the IgG1 class, an immunoglobulin found in profoundly increased amounts in mice infected with M. corti, as well as IgM and IgG2 antibodies, bound to cultured tetrathyridia and facilitated deposition of the third component of C (C3) from dilute mouse serum, presumably via classical pathway activation. The results demonstrate that mouse IgG1 antibodies do not prevent the activation of C by the tetrathyridia or by C-fixing antibodies of other classes which become attached to the tetrathyridia. The activation of C in vitro by tetrathyridia did not affect their ability to grow in mice, even though C3-derived polypeptides could be detected by immunofluorescence on the surface of the parasites.

Animals↗

Quantitative requirements for C3 to induce Forssman systemic shock and cutaneous hemorrhagic vasculitis in guinea pigs.

The requirements of complement (C) to induce systemic and cutaneous Forssman reactions were studied in inbred DHC-BA and Hartley strain guinea pigs. After intravenous injection of Forssman antibody, fatal systemic shock was associated with a marked drop in CH50, C4, and C3 and a lesser decrease in C5 hemolytic activity. Platelet counts and leukocyte counts dropped as well. With the use of the purified low molecular weight factor from cobra venom (CVF) to deplete C3, guinea pigs with less than 1% intravascular C3 were protected from lethal shock. Approximately 1% to 3% C3 activity is required for Forssman cutaneous vasculitis. These results confirm earlier studies that classical complement pathway activation occurs in Forssman shock and demonstrate the exquisite biologic efficiency of C3 in provoking the shock syndrome.

Anaphylatoxins↗

Quantitation of antibodies to varicella-zoster virus by immune adherence hemagglutination.

Immune adherence hemagglutination was compared with the complement fixation test as a means of measuring antibodies to varicella-zoster virus. Analysis of acute- and convalescent-phase sera from patients infected with varicella-zoster or with herpes simplex virus showed the immune adherence hemagglutination test to be more sensitive than the complement fixation test, and greater cross-reactivity between the two viruses appeared to be associated with the increased sensitivity. The two assay methods were used to measure antibodies to varicella-zoster virus in 265 sera obtained from patients of different ages as well as sera from 26 patients with leukemia. There were 35 cases where antibodies were detected by immune adherence hemagglutination but not by complement fixation, whereas in five cases the converse was found. Our findings support the contention that immune adherence hemagglutination is the method of choice for detecting antibodies to varicella-zoster virus.

Acute Disease↗

Phenotype-genotype relationships in PEX10-deficient peroxisome biogenesis disorder patients.

The peroxisome biogenesis disorders (PBD) are characterized by neural, hepatic, and renal deficiencies, severe mental retardation, and are often lethal. These disorders are genetically and phenotypically heterogeneous and are caused by defective peroxisomal protein import and decreased peroxisomal metabolic function. Mutations in PEX10 have been identified in patients from complementation group 7 (CG7) of the PBDs and we report here an analysis of the genotypes and phenotypes of PEX10-deficient patients. All four PEX10-deficient Zellweger Syndrome (ZS) patients were found to have nonsense, frameshift, or splice site mutations that remove large portions of the PEX10 coding region. In contrast, a more mildly affected PEX10-deficient neonatal adrenoleukodystrophy patient expressed a PEX10 allele with a missense mutation, H290Q, affecting the C-terminal zinc-binding domain of the PEX10 product. These results support the hypothesis that severe, loss-of-function mutations in PEX genes cause more severe clinical phenotypes, whereas mildly affected PBD patients have PEX gene mutations that retain residual function. To quantitate the effects of the PEX10 mutations identified here and elsewhere we employed a functional complementation assay. Surprisingly, we observed that nonsense and frameshift mutations predicted to delete the C-terminal 2/3 (R125X) or 1/3 (c.704insA) of the protein displayed nearly normal PEX10 activity. Even more surprising, we found that the unexpectedly high PEX10 activity displayed by these cDNAs could be eliminated by removing or mutating segments of the PEX10 cDNA downstream of the mutations. Although these results demonstrate serious flaws in the PEX10 functional complementation assay, they do suggest that the C-terminal zinc-binding domain is critical for PEX10 function.

Alleles↗