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Anaerobic respiration and energy conservation in Paracoccus denitrificans. Functioning of iron-sulfur centers and the uncoupling effect of nitrite.

1. Electron paramagnetic resonance spectra at 8-60 K of NADH-reduced membrane particles prepared from Paracoccus denitrificans grown anaerobically with nitrate as terminal electron acceptor show the presence of iron-sulfur centers 1-4 in the NADH-ubiquinone segment of the respiratory chain. In addition resonance lines at g = 2.058, g = 1.953 and g = 1.88 are detectable in the spectra of succinate-reduced membranes at 15 K, which are attributed to the iron-sulfur-containing nitrate reductase. 2. Sulphate-limited growth under anaerobic conditions does not affect the iron-sulfur pattern of NADH dehydrogenase or nitrate reductase. Furthermore respiratory chain-linked electron transport and its inhibition by rotenone are not influenced. These results contrast those observed for sulphate-limited growth of P. denitrificans under aerobic conditions [Eur. J. Biochem. (1977) 81, 267-275]. 3. Proton translocation studies of whole cells indicate that nitrite increases the proton conductance of the cytoplasmic membrane, resulting in a collapse of the proton gradient across the membrane. Nitrite accumulates under anaerobic growth conditions with nitrate as terminal electron acceptor; the extent of accumulation depends on the specific growth conditions. Thus the low efficiencies of respiratory chain-linked energy conservation observed during nitrate respiration [Arch. Microbiol. (1977) 112, 17-23] can be explained by the uncoupling action of nitrite.

Anaerobiosis↗

Extranodal marginal zone B-cell lymphoma/maltoma of the lip in a child: case report and review of cutaneous lymphoid proliferations in childhood.

All forms of cutaneous lymphomas are rare in children. Extranodal marginal zone B-cell lymphomas (EMZBL)/mucosa-associated lymphoid tissue (MALT) lymphomas are unusual neoplasms in children and young adults. We report a case of an EMZBL/MALT lymphoma of the lip in a previously healthy 14-year-old boy without immunodeficiency, confirmed by immunohistochemistry and documentation of clonal rearrangement of the immunoglobulin heavy-chain gene. Additionally, we present a review of the differential diagnosis of skin and mucosal lymphoid proliferations in childhood.

Adolescent↗

A survey of pharmacists' opinions and practices related to the sale of cigarettes in pharmacies-revisited.

The objective of the study was to follow-up on important findings from a 1996 statewide survey of Indiana pharmacists regarding their opinions and practices related to the sale of cigarettes in pharmacies. More specifically, this study was designed to (1) collect 2001 state-wide data concerning the percentage of Indiana pharmacies selling cigarettes and to learn what pharmacists think about the sale of cigarettes in their stores; (2) compare these findings with results from a 1996 study; and collect new information on (3) whether a cigarette selling policy in pharmacies in which pharmacists are employed differs from their professional and personal values; (4) pharmacists' opinions related to state-wide initiatives on tobacco control in Indiana; and (5) the level of involvement with smoking cessation activities by community pharmacists. A 1996 survey instrument of Indiana pharmacists opinions and practices related to the sale of cigarettes in pharmacies served as the basis for questionnaire design. In addition, 11 new items were added to assess the three new objectives of the study. This questionnaire was administered to half of the 1,280 pharmacies in Indiana. Collected data were analyzed by using descriptive and inferential statistical methods. Findings reveal that independent pharmacies had significantly reduced their sale of cigarettes from 1996 while there was no significant change among retail chain pharmacies. Additionally, significantly more pharmacists in 2001 believed that pharmacies should not sell cigarettes compared to five years ago. Also, more than three-fourths of pharmacists who worked in pharmacies that sold cigarettes felt it differed from their professional values. When it came to pharmacists involvement in tobacco control activities, results were mixed. This study found that the majority of pharmacists do not ask their patients about their smoking habits. In addition, an overwhelming majority of Indiana pharmacists were unfamiliar with a number of state public health programs/resources on smoking preven- tion and cessation. Nevertheless, it was very encouraging that nearly three-fourths of the pharmacies offer counseling programs for smokers who want to quit and more than one-half believed that increasing the state excise tax on cigarettes would be effective on tobacco control in Indiana.

Adult↗

Detection of Epstein-Barr virus in salivary gland specimens from Sjögren's syndrome patients.

The cause of Sjögren's syndrome remains unclear, but several environmental and genetic factors have been implicated. The Epstein-Barr virus (EBV), among others (e.g., cytomegalovirus, human herpesvirus 6, and retroviruses), has been widely studied in connection with Sjögren's syndrome without conclusive results. To determine the role of EBV infection in patients with Sjögren's syndrome, the presence of EBV deoxyribonucleic acid (DNA) in major and minor salivary gland biopsy specimens was investigated by means of sulfur 35 in situ hybridization and polymerase chain reaction. Additionally, the presence of latent virus proteins EBV latent membrane protein and Epstein-Barr nuclear antigen 2 was analyzed by immunohistochemical methods. Viral DNA, detected by in situ hybridization, was found in 19% of patients with a diagnosis of Sjögren's syndrome and in 3% of controls. All tissues studied were found to be negative for EBV DNA by polymerase chain reaction. EBV latent membrane protein-positive staining was seen in 17% of patients and 22% of control subjects, while Epstein-Barr-positive staining was found in 25% of patients and 39% of controls. The low frequency of EBV DNA detected in the biopsy specimens does not indicate that the virus itself is the cause of Sjögren's syndrome. However, the possibility that the virus acts as a cofactor cannot be ruled out.

Adolescent↗

Core protein dependence of epimerization of glucuronosyl residues in galactosaminoglycans.

Chondroitin sulfate and dermatan sulfate proteoglycans are distinguished by differences in their proportion of d-glucuronosyl and l-iduronosyl residues, the latter being formed by chondroitin-glucuronate 5-epimerase during or after glycosaminoglycan chain polymerization. To investigate the influence of the core protein on the extent of epimerization, we expressed chimeric proteins in 293 HEK cells constructed from intact or modified Met(1)-Gln(153) of decorin (DCN), which normally has a single dermatan sulfate chain at Ser(34), in combination with intact or modified Leu(241)-Ser(353) of CSF-1, which has a chondroitin sulfate attachment site at Ser(309). Transfected DCN(M1-Q153), like full-length DCN, contained approximately 20% l-iduronate. Conversely, transfected CSF-1(L241-S353), attached C-terminally on the DCN prepropeptide, contained almost exclusively d-glucuronate. Transfected intact chimeric DCN(M1-Q153)-CSF-1(L241-S353), with two glycosaminoglycan chains, also contained almost exclusively d-glucuronate in chains at both sites, as did chimeras in which alanine was substituted for serine at either of the glycosaminoglycan attachment sites. Nevertheless, undersulfated intact chimeric proteoglycan was an effective substrate for epimerization of glucuronate to iduronate residues when incubated with microsomal proteins and 3'-phosphoadenylylphosphosulfate. C-terminal truncation constructs were prepared from the full-length chimera with an alanine substitution at the CSF-1 glycosaminoglycan attachment site. Transfected truncations retaining the alanine-blocked site contained chains with essentially only glucuronate, whereas those further truncated by 49 or more amino acids and missing the modified attachment site contained chains with approximately 15% iduronate. This 49-amino acid region contains a 7-amino acid motif that appears to be conserved in several chondroitin sulfate proteoglycans. The results are consistent with a model in which the core protein, possibly via this motif, is responsible for routing to subcellular compartments with or without sufficient access to chondroitin-glucuronate 5-epimerase for the addition of chains with or without iduronate residues, respectively.

Amino Acid Sequence↗

Biofiltration and inhibitory interactions of gaseous benzene, toluene, xylene, and methyl tert-butyl ether.

This study evaluated the individual and combined removal capacities of benzene, toluene, and xylene (B, T, and X) in the presence and absence of methyl tert-butyl ether (MTBE) in a polyurethane biofilter inoculated with a BTX-degrading microbial consortium, and further examined their interactive effects in various mixtures. In addition, Polymerase chain reaction-denaturing gradient gel electrophoresis and phylogenetic analysis of 16S rRNA gene sequences were used to compare the microbial community structures found in biofilters exposed to the various gases and gas mixtures. The maximum individual elimination capacities (MECs) of B, T, and X were 200, 238, and 400 g m(-3) h(-1), respectively. There was no significant elimination of MTBE alone. Addition of MTBE decreased the MECs of B,T, and X to 75, 100, and 300 g m(-3) h(-1), respectively, indicating that benzene was most strongly inhibited by MTBE. When the three gases were mixed (B + T + X), the removal capacities of individual B, T, and X were 50, 90, and 200 g m(-3) h(-1), respectively. These capacities decreased to 40, 50, and 100 g m(-3) h(-1) when MTBE was added to the mix. The MEC of the three-gas mixture (B + T + X) was 340 g m(-3) h(-1), and that of the four-gas mixture was 200 g m(-3) h(-1). Although MTBE alone was not degraded by the biofilter, it could be co-metabolically degraded in the presence of toluene, benzene, or xylene with the MECs of 34, 23, and 14 g m(-3) h(-1), respectively. The microbial community structure analysis revealed that two large groups could be distinguished based on the presence or absence of MTBE, and many of the dominant bacteria in the consortia were closely related to bacteria isolated from aromatic hydrocarbon-contaminated sites and/ or oil wastewaters. These findings provide important new insights into biofiltration and may be used to improve the rational design of biofilters for remediation of petroleum gas-contaminated airstreams according to composition types of mixed gases.

Air Pollutants↗

[Microheterogeneity of alpha-fetoprotein in the amniotic fluid--developmental changes in the molecular structure of carbohydrate chain].

By means of lectin affinity crossed-line immunoelectrophoresis, microheterogeneity of alpha-fetoprotein (AFP) was studied in 41 amniotic fluid samples between 41 to 287 days of gestation. Microheterogeneity was assessed by the structural differences in the carbohydrate chain identified by the specific binding between oligosaccharide molecule(s) and certain lectins such as concanavalin A, Lens culinaris hemagglutinin, phytohemagglutinin E or Ricinus communis agglutinin I. It was found that four carbohydrate chains were identifiable at an early stage of gestation; (1) mannose (Man).core type, (2) bisecting N-acetylglucosamine (GlcNAc) type, (3) fucose (Fuc) type, and fucosyl-bisecting GlcNAc type. A carbohydrate chain with both bisecting GlcNAc and Fuc was found only at an early stage of of gestation. A carbohydrate chain with either bisecting GlcNAc or Fuc also decreased with fetal growth, and AFP at the end stage of gestation was composed mainly of Man.core type carbohydrate chain. The addition or removal of the oligosaccharide molecule takes place at the Goldi complex subjected to various modifications by the glycosylation enzyme, and the present findings indicate that a certain enzyme (s) for the processing of oligosaccharide differs according to the developmental change in AFP-producing sites or the maturation of AFP-producing cells, and such is responsible for the different AFP carbohydrate chains in the amniotic fluid at different gestational stages.

Amniotic Fluid↗

Analysis of monoclonal antibodies reactive with human class II beta chains by two-dimensional electrophoresis and Western blotting.

We have used the Western blotting technique to examine B lymphoblastoid cell line (B-LCL) membrane proteins separated by two-dimensional gel electrophoresis specifically to analyze the binding patterns of monoclonal antibodies to separated HLA class II antigen beta (beta) subunits. The B-LCL LG-10 (homozygous for DR7), in which at least two sets of class II molecules can be distinguished on the basis of different electrophoretic mobilities, was examined with five monoclonal antibodies which detect monomorphic determinants. Four of the antibodies reacted with only DR beta subunits, while one antibody, XD5.A11, reacted with DR and with additional beta chains. Examination of two polymorphic monoclonal antibodies, SFR3-DR5, specific for HLA-DR5, and SFR3-PI.1, which reacts with a determinant absent from DR3 and DR7 homozygous lines, showed that both bind beta subunits from Swei, a DR5 homozygous line. Purification of a subpopulation of Swei class II molecules using an SFR3-PI.1 affinity column showed that the determinants recognized by SFR3-DR5, SFR3-PI.1, and a monomorphic monoclonal antibody reactive only with HLA-DR beta subunits of LG-10, reacted with identical beta subunits. Additional class II antigen subunits reactive with XD5.A11 were nonreactive with the polymorphic antibodies and the HLA-DR-specific monomorphic monoclonal antibody.

Animals↗

Muscle protein synthesis: regulation of a translational inhibitor.

Insulin and branched-chain amino acids are known to stimulate protein synthesis in skeletal muscle. Extracts prepared from rat diaphragms after incubation in balanced salt solution and glucose alone yielded heat- and acid-stable, TCA-precipitable, nondialyzable factor(s) that inhibit protein synthesis when added to rabbit reticulocyte lysates. Polyribosomal profiles of inhibited lysates were consistent with a defect in peptide-chain initiation. Addition of insulin and amino acids to the diaphragm incubation media partially removed the inhibition seen with the muscle extract and was accompanied by an increase in polysomes and decreased subunits. Similarly, extracts prepared from rat hindlimb muscle 48 h after induction of diabetes were much more inhibitory in rabbit reticulocyte lysates than extracts from control rats. Polyribosomal profiles were consistent with defective peptide-chain initiation. Trypsin treatment before assay abolished the inhibitory activity of muscle extracts from diabetic rats. Because translation-inhibiting peptide(s) appear to be under metabolic and/or hormonal control, their possible role in muscle protein homeostasis warrants further study.

Amino Acids↗

Differences in cytotoxicity of native and engineered RIPs can be used to assess their ability to reach the cytoplasm.

Ricin is a heterodimeric cytotoxin composed of RTB, a galactose binding lectin, and RTA, an enzymatic N-glycosidase. The toxin is endocytosed, and after intracellular routing, RTA is translocated to the cytoplasm where it inactivates ribosomes resulting in a loss of host cell protein synthesis and cell death. We show for the first time that the cytotoxicity against cultured T cells by several RTA mutants is directly proportional to the enzyme activity of RTA, suggesting this is a reliable system to measure translocation effects. Large discrepancies between cytotoxicity and enzyme action for a given pair of toxins are therefore attributable to differences in cell binding, uptake, or membrane translocation. Fluid phase uptake and cytotoxicity of isolated RTA are essentially identical to that of the single chain toxin PAP. This important finding suggests that RTA, and the A chain of class 2 RIPs in general, has not evolved special translocation signals to complement the increased target cell binding facilitated by RTB. Experiments with the lectin RCA and with ebulin suggest those toxins have diminished cytotoxicity probably mediated by comparative deficiencies in B chain binding. Addition of a KDEL sequence to RTA increases fluid phase uptake, consistent with the notion that transport to the ER is important for cytotoxicity. Fusion of MBP or GST to the amino terminus of RTA has little effect on enzyme action or cytotoxicity. This result is not altered by protease inhibitors, suggesting the fusion proteins are probably not cleaved prior to translocation of the toxic A chain and implying that the toxins can carry large passenger proteins into the cytoplasm, an observation with interesting potential for analytical and therapeutic chemistry.

Amino Acid Sequence↗

Somatically mutated Ig V(H)3-21 genes characterize a new subset of chronic lymphocytic leukemia.

Recent studies on the immunoglobulin variable heavy chain (IgV(H)) genes have revealed that B-cell chronic lymphocytic leukemia (B-CLL) consists of at least 2 clinical entities with either somatically mutated or unmutated V(H) genes. We have analyzed the V(H) gene mutation status and V(H) gene usage in 119 B-CLL cases and correlated them to overall survival. A novel finding was the preferential use of the V(H)3-21 gene in mutated cases, whereas biased V(H)1-69 gene usage was found in unmutated cases as previously reported. Interestingly, the subset of mutated cases using the V(H)3-21 gene displayed distinctive genotypic/phenotypic characteristics with shorter average length of the complementarity determining region 3 and clonal expression of lambda light chains. In addition, this mutated subset showed significantly shorter survival than other mutated cases and a similar clinical course to unmutated cases. We therefore suggest that B-CLL cases with mutated V(H)3-21 genes may constitute an additional entity of B-CLL.

Aged↗

[A case of extramedullary plasmacytoma of the lung associated with nodular deposit of amyloid].

A 63-year-old man underwent left upper lobectomy because of a 35-mm tumor in the lingula. Microscopic findings showed that the tumor was composed of a proliferation of plasma cells, and that in some areas eosinophilic amorphous material had been deposited between the tumor cells. By immunoperoxidase staining, the tumor cells were positive for IgG and kappa chain, but they were negative for lambda chain. In addition to the tumor in the lingula, another nodule was found in the left lower lobe and was resected at thoracotomy. The nodule was composed of diffuse eosinophilic amorphous material, which was found to be amyloid after Congo red staining and observation in polarized light. In and around the nodule, a few plasma cells were noted and these cells were also positive for IgG and kappa chain, but negative for lambda chain immunoperoxidase staining. In serum taken from the patient before surgery, M-protein was not detected by immuno electrophoresis but polyclonal hypergammaglobulinemia was noted, and it continued after the thoractomy. Bone marrow examination and a bone scintigram revealed no abnormality. In this case, a pulmonary plasmacytma co-existed with nodular pulmonary amyloidosis. We could not determine which lesion developed first, but the results of the immunoperoxidase staining of plasma cells in both lesions indicate that the origin of the plasmacytoma was probably the same as that of the nodular amyloid.

Amyloidosis↗

O- and N-glycosylation of the Leishmania mexicana-secreted acid phosphatase. Characterization of a new class of phosphoserine-linked glycans.

The protozoan parasite Leishmania mexicana secretes a heavily glycosylated 100-kDa acid phosphatase (sAP) which is associated with one or more polydisperse proteophosphoglycans. Most of the glycans in this complex were released using mild acid hydrolysis conditions that preferentially cleave phosphodiester linkages. The released saccharides were shown to consist of monomeric mannose and a series of neutral and phosphorylated glycans by Dionex high performance liquid chromatography, methylation analysis, exoglycosidase digestions, and one-dimensional 1H NMR spectroscopy. The neutral species comprised a linear series of oligosaccharides with the structures [Man alpha 1-2]1-5Man. The phosphorylated oligosaccharides were characterized as PO4-6Gal beta 1-4Man and PO4-6[Glc beta 1-3]Gal beta 1-4Man. The attachment of these glycans to the polypeptide backbone via the linkage, Man alpha 1-PO4-Ser, is suggested by: 1) the finding that more than 60% of the serine residues in the polypeptide are phosphorylated and 2) the resistance of the phosphoserine residues to alkaline phosphatase digestion unless the sAP was first treated with either mild acid (to release all glycans) or jack bean alpha-mannosidase (to release neutral mannose glycans). Analysis of the partially resolved components of the complex indicated that the most of the O-linked glycans on the 100-kDa phosphoglycoprotein comprised mannose and the mannose-oligosaccharides. In contrast the major O-linked glycans on the proteophosphoglycan were short phosphoglycan chains, containing on average two repeat units per chain. In addition to the O-linked glycans, both components in the sAP complex contained N-linked glycans. The N-glycanase F-released glycans were characterized by Bio-Gel P4 chromatography and exoglycosidase digestions to be the biantennary oligomannose type with the structures Glc1Man6GlcNAc2 and Man6GlcNAc2. The O-linked glycans of the sAP complex are similar to those found in the phosphoglycan chains of the abundant surface lipophosphoglycan, but differ in having much shorter phosphoglycan chains and a more diverse series of mannose cap oligosaccharides. These data suggest that there are marked differences in the ability of different glycosyltransferases to utilize peptide-linked versus glycolipid-linked acceptors.

Acid Phosphatase↗

Mapping of subsites in the combining area of monoclonal anti-galactan immunoglobulin A J539.

Monoclonal immunoglobulin A J539 binds beta-(1----6)-D-galactopyranans. Measurement of the affinity of its Fab' fragment for a series of galacto oligosaccharides--some of which carried deoxyfluoro groups--has made it possible to assign a binding mode of the polysaccharide that has the reducing end oriented from the heavy (H) chain toward the light (L) chain. In addition, the values obtained for the affinity constants of the immunoglobulin with these oligosaccharides, as well as the maximal values obtained for the intrinsic ligand-induced fluorescence, permit a deduction about the relative affinity of the protein's four subsites for each galactose residue of the tetrasaccharide fragment it can bind. If these subsites are labeled C, A, B, and D, going from the H-chain toward the L-chain across the face of the immunoglobulin combining area, then the order of decreasing affinity is A greater than B greater than C greater than D.

Antibodies, Monoclonal↗

Influence of docosahexaenoic acid and cholesterol on lateral lipid organization in phospholipid mixtures.

We investigated lateral lipid organization in membranes with a lipid composition relevant to neural and retinal membranes [phosphatidylcholine (PC)/phosphatidylethanolamine (PE)/phosphatidylserine (PS)/cholesterol, 4/4/1/1, mol/mol/mol/mol]. The mixed-chain phospholipids contained saturated stearic acid (18:0) in the sn-1 position and the monounsaturated oleic acid (18:1) or polyunsaturated docosahexaenoic acid (22:6) in sn-2. Lateral lipid organization was evaluated by 2H NMR order parameter measurements on stearic acid of all individual types of phospholipids in the mixture and, through a novel approach, two-dimensional NOESY 1H NMR spectroscopy with magic angle spinning (MAS). The docosahexaenoic acid chain order was evaluated from 1H NMR chain signal MAS-sideband intensities. Averaged over all lipids, the cholesterol-induced increase in sn-1 chain order is 2-fold larger in monounsaturated than in polyunsaturated lipids, and the order of both saturated and polyunsaturated hydrocarbon chains increases. Addition of cholesterol increases lipid order in the sequence 18:0-18:1 PE > 18:0-18:1 PC > 18:0-18:1 PS for the monounsaturated and 18:0-22:6 PC >> 18:0-22:6 PE > 18:0-22:6 PS for polyunsaturated mixtures. The variation of order parameters between lipid species suggests that cholesterol induces the formation of lipid microdomains with a headgroup and chain unsaturation-dependent lipid composition. The preferential interaction between cholesterol and polyunsaturated 18:0-22:6 PC, followed by 18:0-22:6 PE and 18:0-22:6 PS, was confirmed by 1H MAS NOESY cross-relaxation rate differences. Furthermore, cholesterol preferentially associates with saturated chains in mixed-chain lipids reflected by higher saturated chain-to-cholesterol cross-relaxation rates. We propose that cholesterol forms PC-enriched microdomains in the polyunsaturated 18:0-22:6 PC/18:0-22:6 PE/18:0-22:6 PS/cholesterol membranes in which the saturated sn-1 chains are preferentially oriented toward the cholesterol molecules.

Cholesterol↗

Structure of Ia antigens: identification of dimeric complexes formed by the invariant chain.

A 2-dimensional gel technique was used for the identification of disulfide-linked polypeptide complexes formed by Ia chains and their corresponding subunits. Several dimers containing the invariant (Ii) chain were found. The most prominent one consisted of 2 Ii chains. In addition, Ii molecules were found to be covalently linked to 3 unknown components of 41,000, 27,000, and 10,000 to 15,000 m.w. The dimeric form of Ii exists also after alkylation of free SH-groups with iodoacetamide, which suggests that formation of the Ii dimer is not the result of experimental conditions. Furthermore, noncovalently associated dimers formed by processed alpha- and beta-chains as well as by their precursors alpha p and beta p could be detected. No mixed associated chains composed of precursors and processor molecules were observed, which indicates that processing and insertion into the membrane take place only after dimerization.

Alkylation↗

Structure of human plasminogen kringle 4 at 1.68 a and 277 K. A possible structural role of disordered residues.

Despite considerable effort to elucidate the functional role of the kringle domains, relatively little is known about interactions with other protein domains. Most of the crystal structures describe the interactions at the kringle active site. This study suggests a novel way to interpret structural results such as disorder located away from an active site. The crystal structure of human plasminogen kringle 4 (PGK4) has been refined against 10-1.68 A resolution X-ray data (R(merge) = 3.7%) to the standard crystallographic R = 14.7% using the program X-PLOR. The crystals of PGK4 showed significant instability in cell dimensions (changes more than 1.5 A) even at 277 K. The refinement revealed structural details not observed before [Mulichak, Tulinsky & Ravichandran (1991). Biochemistry, 30, 10576-10588], such as clear density for additional side chains and more extensive disorder. Discrete disorder was detected for residues S73, S78, T80, S89, S91, S92, Ml12, S132, C138 and K142. Most of the disordered residues form two patches on the surface of the protein. This localized disorder suggests that these residues may play a role in quaternary interactions and possibly form an interface with the other domains of proteins that contain kringles, such as plasminogen. Although, an additional residue D65 was refined at the beginning of the sequence, still more residues near the peptide cleavage site must be disordered in the crystal.

Journal Article↗

Synthesis of human placental lactogen and human chorionic gonadotropin by polyribosomes and messenger RNA's from early and full term placentas.

Synthesis of human placental lactogen (hPL) and of human chorionic gonadotropin (hCG) by membrane-bound and free polyribosomes from early and from full term human placentas was investigated by in vitro release of the nascent hormone peptides, followed by immunoprecipitation and electrophoresis in sodium dodecyl sulfate gels, and by specific binding of 125I-labeled hPL antibody to nascent peptide chains. In addition, messenger RNA'S Were extracted from total, free, and membrane-bound placental polyribosomes and their capacities for hPL and hCG synthesis were measured in a heterologous cell-free system prepared from wheat germ. Membrane-bound polyribosomes from full term placentas were several times more active in the synthesis of both peptide hormones than were free polyribosomes. By binding 125I-labeled hPL antibody to nascent chains on the polyribosomes, it was determined that hPL is made by clusters of seven to nine ribosomes. About 8% of the nascent peptide chains released by incubation of polyribosomes from full term placentas was accounted for by hPL, and 2% by hCG. In contrast, no chains of hPL were released by polyribosomes from 10-week placentas, whereas 11% of the total released chains were accounted for by hCG. When messenger RNAs prepared from the polyribosomes of 20- and 40-week placentas were used to stimulate protein synthesis in a wheat germ system, hPL accounted for 0.4 and 2%, respectively, of total protein synthesis, while hCG was 8 and 2%, respectively. This confirmed the relative proportions observed for nascent chains on the polyribosomes of early and late placentas. Unexpectedly, translation of mRNA from free polyribosomes yielded as much hPL and two-thirds as much hCG as did translation of mRNA from bound polyribosomes. We conclude, that the decreased blood levels of hCG and increased blood levels of hPL with advancing gestational age reflect the relative in vitro rates of synthesis of these hormones by placental polyribosomes, the abundance of which is determined by availability of their respective messenger RNAs at different times in gestation.

Animals↗