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I Boime

Publications and source records attributed to I Boime.

At least 73 records · Page 4Linked to original sources

Mutagenesis and gene transfer define site-specific roles of the gonadotropin oligosaccharides.

Human chorionic gonadotropin (hCG), luteinizing hormone (LH), follicle-stimulating hormone and thyroid-stimulating hormone are a family of glycoprotein hormones that share a common alpha subunit but differ in their hormone-specific beta subunits. Using site-directed mutagenesis and gene-transfer, we analyzed the role of the N-linked oligosaccharides of alpha and chorionic gonadotropin (CG)beta in the secretion, assembly, and biologic activity of hCG. Absence of carbohydrate at alpha asparagine (Asn) 52 decreased combination with CG beta but did not alter monomer secretion. Absence of the alpha Asn78 oligosaccharide increased the degradation of the alpha subunit, but the presence of CG beta stabilized this alpha mutant in an efficiently formed dimer complex. Alternatively, absence of both alpha oligosaccharides slowed both secretion and dimer formation but allowed an intermediate level of alpha secreted or dimerized compared to the single-site mutants. Analysis of the CG beta glycosylation mutants revealed that absence of the Asn30 oligosaccharide, but not Asn13, slowed secretion but not assembly, whereas absence of both oligosaccharides slowed both secretion and dimer formation. Analysis of the receptor binding of the hCG glycosylation mutants showed that absence of any or all of the hCG N-linked oligosaccharides had only a minor effect on receptor affinity of the derivatives. However, the absence of alpha Asn52, but not the alpha Asn78 or the CG beta carbohydrate units, reduced the steroidogenic effect, unmasked differences in the beta oligosaccharides, and converted the deglycosylated derivatives into antagonists.

Animals↗

Expression of recombinant human choriogonadotropin in Chinese hamster ovary glycosylation mutants.

Human CG, a member of the glycoprotein hormone family that includes LH, FSH, and TSH, is composed of two nonidentical subunits each containing two asparagine linked (N-linked) oligosaccharides. The role of the oligosaccharides in the action of these hormones is unclear. To examine the structure-activity relationships of the glycoprotein hormone oligosaccharides using nonenzymatic and nonchemical methods, we transfected CG subunit genes into mutant cell lines derived from Chinese hamster ovary cells. Two mutant cell lines that synthesize truncated oligosaccharides were used. Cell line 15B, lacking N-acetylglucosaminyltransferase I, synthesizes N-linked carbohydrates containing Man5 oligomannosyl structures, and 1021, defective in transporting CMP-sialic acid into the Golgi, results in sialic-acid deficient glycoproteins. The binding of these derivatives to the LH/CG receptor did not differ significantly from purified CG (CR119), but the ability of the mutant hormones to stimulate cAMP biosynthesis in vitro is reduced compared to wild-type CG or CR119. Since the amino acid sequence of CG from the mutant and wild-type cells is identical, these data indicate that oligosaccharide structures, while not influencing receptor binding, directly affect signal transduction.

Animals↗

[Studies on the transcriptional regulatory elements of the hCG beta gene cluster using a choriocarcinoma cell line which expresses hCG beta eutopically].

We previously identified the promoter region for hCG beta gene with mouse adrenal cell line Y1. However, it was not know why this cell line, which does not express hCG beta eutopically, expresses hCG beta when the gene is transfected exogenously. Therefore, to confirm the results obtained in Y1 cell experiments, it was important to establish a system in which the activity of hCG beta transcriptional regulatory elements can be tested in cells which express hCG beta eutopically. Here we report success in establishing such a system, using constructs containing hCG beta upstream elements in front of the promotorless chloramphenicol acetyl transferase (CAT) gene and also carrying the neomycin resistance gene. These constructs were transfected stably into JAr choriocarcinoma cells which express hCG beta eutopically. Then the expression of CAT in each transfected cell line was examined. The results of this experiment confirmed the presence of basic promoter elements within 78bp of the transcriptional initiation site, which we had suggested previously as a result of Y1 experiments. The results also suggest the existence of additional transcriptional regulatory elements further upstream. It was also confirmed that gene 7 is an inactive gene.

Cell Line↗

[Studies on the control mechanism of hCG beta gene expression--focusing on identification of promoter and other transcriptional regulatory elements].

hCG beta gene is composed of 6 genes or pseudogenes. To find which of these 6 genes are active and which are inactive, a cosmid clone containing the entire hCG beta gene cluster, which we had isolated previously, was separated into subclones containing each gene. Then they were transfected into mouse Y1 cells which express this gene efficiently. The result showed that genes 5, 3 and 8 are active and the rest are inactive. To identify the promoter region of gene 5, which is the most active gene, we created deletion mutants lacking various lengths of gene 5 upstream sequence. We made them either by using restriction endonuclease or Exonuclease III. We transfected them into Y1 cells and studied which part of the upstream sequence is required for hCG beta expression. The results of this experiment show that the promoter region for hCG beta is located within 78bp of the cap site and there are additional regulatory elements upstream. The information obtained here provides a foundation for analytical studies on nuclear factors binding to this region regulating hCG beta expression.

Chorionic Gonadotropin↗

Site-specific mutagenesis defines the intracellular role of the asparagine-linked oligosaccharides of chorionic gonadotropin beta subunit.

The beta subunit of human chorionic gonadotropin contains two asparagine (N)-linked oligosaccharides. To examine the structural and functional roles of these oligosaccharide units in vivo, we constructed mutant genes containing alterations in either the asparagine or threonine codons of the two glycosylation consensus sequences and inserted them into a eukaryotic expression vector. Wild-type and mutant CG beta proteins were expressed in Chinese hamster ovary cells alone or in the presence of native alpha subunit. Pulse-chase analysis of the beta-expressing clones showed that absence of the second N-linked sugar but not the first slows secretion 1.6-1.8-fold; absence of both N-linked units slows secretion 2-2.4-fold. Analysis of dimer clones reveals that greater than 80% of the native and glycosylation mutant CG beta subunits are secreted as dimer. However, pulse-chase analysis of these clones also reveals that the mutants completely devoid of N-linked sugars but not the single site mutants are slow to assemble with the alpha subunit. Thus, in vivo the two N-linked oligosaccharides of CG beta are critical for efficient secretion and assembly with the alpha subunit and are likely important for proper folding of the CG beta subunit.

Animals↗

Identification of a promoter region in the CG beta gene cluster.

To identify the promoter sequence(s) of the CG beta gene, genomic fragments derived from a cosmid containing the CG beta gene family were transfected into mouse Y1 adrenal cortical cells. Using this system, we showed that the CG beta genes 5, 3, and 8 have functional promoters, the basal element of which in the case of CG beta 5, was within 78 base pairs 5' ward from the CAP site. The size of the CG beta transcripts and identity of the transcription start site was the same for CG beta mRNA synthesized in Y1 cells as in first trimester placenta. The promoter region identified by this system was also capable of driving the chloramphenicol acetyltransferase gene when transfected stably into choriocarcinoma cells. Chloramphenicol acetyltransferase constructs bearing variable length of 5'-flanking sequences from CG beta 5 and transfected into trophoblast cells suggest the presence of regulatory sequences within 700 base pairs from the CAP site. The information obtained here provide a foundation for studies of analyzing trans-acting placental and pituitary proteins to the defined CG beta promoter region.

Animals↗

The role of the asparagine-linked oligosaccharides of the alpha subunit in the secretion and assembly of human chorionic gonadotrophin.

Human chorionic gonadotropin (hCG) is a member of a family of heterodimeric glycoprotein hormones that have a common alpha subunit but differ in their hormone-specific beta subunit. Site-directed mutagenesis of the two asparagine-linked glycosylation sites of hCG alpha was used to study the function of the individual oligosaccharide chains in secretion and subunit assembly. Expression vectors for the alpha genes (wild-type and mutant) and the hCG beta gene were constructed and transfected into Chinese hamster ovary cells. Loss of the oligosaccharide at position 78 causes the mutant subunit to be degraded quickly and less than 20% is secreted. However, the presence of hCG beta stabilizes this mutant and allows approximately 45% of the subunit in the form of a dimer to exit the cell. Absence of carbohydrate at asparagine 52 does not perturb the stability or transport of the alpha subunit but does affect dimer secretion; under conditions where this mutant or hCG beta was in excess, less than 30% is secreted in the form of a dimer. Mutagenesis of both glycosylation sites affects monomer and dimer secretion but at levels intermediate between the single-site mutants. We conclude that there are site-specific functions of the hCG alpha asparagine-linked oligosaccharides with respect to the stability and assembly of hCG.

Amino Acid Sequence↗

The glycoprotein alpha-subunit is critical for secretion and stability of the human thyrotropin beta-subunit.

TSH is a member of a family of heterodimeric glycoprotein hormones which have a common alpha-subunit but differ in their hormone-specific beta-subunit. To study the posttranslational processing and assembly of human TSH, eukaryotic expression vectors were constructed that contained either the human TSH beta gene only or both the TSH beta and alpha-genes. These vectors were transfected into Chinese hamster ovary cells and stable cell lines synthesizing TSH beta or TSH dimer were isolated. The kinetics of secretion of TSH beta and the rate of assembly of TSH dimer were compared to the known secretion and assembly of human LH and human CG. In the absence of the alpha-subunit, CG beta is secreted efficiently, but TSH and LH beta-subunits are slowly degraded intracellularly (t1/2 approximately equal to 6 h) and less than 10% is secreted into the medium. In the presence of the alpha-subunit CG beta was also secreted efficiently as dimer but only 50% of the LH beta appeared in the medium as LH dimer. However, unlike LH beta, the alpha-subunit efficiently combines with TSH beta since greater than 95% was secreted as TSH dimer. Thus, the determinants for human TSH beta secretion and assembly are unique from the other human glycoprotein hormone beta-subunits.

Animals↗

Gonadotropin alpha subunit. Differential processing of free and combined forms in human trophoblast and transfected mouse cells.

The gonadotropins luteinizing hormone, follicle-stimulating hormone, and human chorionic gonadotropin are composed of two noncovalently linked subunits, alpha and beta. The alpha subunit, identical in all three hormones, is produced in excess over the unique beta subunits by pituitary and placenta, and is secreted as uncombined, or free subunit. Free alpha subunit from both tissues has a larger molecular weight than the dimer form. In bovine pituitary an extra O-linked oligosaccharide is added to free alpha subunit, and this modification has recently been detected at an analogous position (threonine 39) on human alpha subunit secreted by choriocarcinoma cells. To assess the contribution of N-linked and O-linked oligosaccharides to the heterogeneity of human free alpha subunit, we have compared free alpha with human chorionic gonadotropin alpha secreted by explants and cultured cytotrophoblasts of human first trimester placenta. We have also examined the free and combined forms of human alpha subunit expressed in transfected C-127 mouse mammary tumor cells. Processing of the alpha subunit in placental and C-127 cells was similar. Tryptic mapping of placental-derived and transfected alpha subunits indicated that O-glycosylation at threonine 39 was not a major modification. In the presence of the oligosaccharide processing inhibitor swainsonine the difference in size between the free and combined forms of alpha was eliminated in both placental and C-127 cells, indicating that the two forms of alpha differed in their N-linked oligosaccharides. Furthermore, the oligosaccharides of free alpha subunits from placental and transfected cells were resistant to endoglycosidase H, but the combined forms of alpha were partially sensitive to the enzyme. Thus, in human first trimester placenta and mouse C-127 cells, combination of alpha with human chorionic gonadotropin beta alters the processing of N-linked oligosaccharides on alpha subunit.

Alkaloids↗

Cosmid mapping of the human chorionic gonadotropin beta subunit genes by field-inversion gel electrophoresis.

A cosmid clone containing the entire hCG beta gene cluster has been isolated. The restriction map of this clone has been determined by an indirect-end-label FIGE (field inversion gel electrophoresis) method. Analysis of this cosmid clone shows that there are 6 hCG beta genes in human genomic DNA. A previously uncloned portion of the hCG beta cluster, termed the "gap" region, has been shown not to contain any sequences homologous to the hCG beta cDNA. The restriction mapping method employed in this study takes advantage of the superior resolution of FIGE for high molecular weight DNA fragments in the size range 15-50 kb. This method is broadly applicable and permits rapid and accurate restriction mapping for extended regions of genomic DNA that have been cloned into cosmid or lambda vectors.

Chorionic Gonadotropin↗

Effects of preventing O-glycosylation on the secretion of human chorionic gonadotropin in Chinese hamster ovary cells.

Human chorionic gonadotropin (hCG) is a member of a family of heterodimeric glycoprotein hormones that have a common alpha subunit but differ in their hormone-specific beta subunits. The beta subunit of hCG (hCG beta) is unique among the beta subunits in that it contains four mucin-like O-linked oligosaccharides attached to a carboxyl-terminal extension. To study the effects of O-glycosylation on the secretion and assembly of hCG, expression vectors containing either the hCG beta gene alone or together with the hCG alpha gene were transfected into a mutant Chinese hamster ovary cell line, IdID, which exhibits a reversible defect in O-glycosylation. Our results reveal that hCG beta can be secreted normally in the absence of its O-linked oligosaccharides. hCG beta devoid of O-linked carbohydrate can also combine efficiently with hCG alpha and be secreted as an intact dimer. We conclude that in Chinese hamster ovary cells, the hCG beta O-linked chains play no role in the assembly and secretion of hCG. The normal and O-linked oligosaccharide-deficient forms of hCG secreted by these cells should prove useful in examining the role of O-linked chains on the biological function of hCG.

Acetylgalactosamine↗

Gonadotropin beta subunits determine the rate of assembly and the oligosaccharide processing of hormone dimer in transfected cells.

The glycoprotein hormones lutropin (LH) and chorionic gonadotropin (CG) share a common structure consisting of an identical alpha subunit noncovalently linked to a hormone-specific beta subunit. While LH is produced in the anterior pituitary, CG is synthesized in placenta. To compare the assembly, processing, and secretion of human LH and CG in the same cell type, we have expressed their subunits, individually and together, in mouse C-127 mammary tumor cells. Analysis of transfected clones revealed an unexpected difference in the secretion of individually expressed subunits. Whereas alpha and CG beta subunits were rapidly and quantitatively secreted, only 10% of newly synthesized LH beta subunit reached the medium. The remaining subunit was found in an intracellular, endoglycosidase H (endo H)-sensitive pool that had a turnover rate of approximately 8 h. Coexpression with alpha subunit resulted in "rescue" of LH beta subunit by formation of LH dimer, which was efficiently secreted. However, combination of LH beta with alpha was slow, with an overall efficiency of only 50% despite the presence of excess alpha. In contrast, CG beta was rapidly assembled with the alpha subunit after synthesis. The two beta subunits also differed in their influence on the N-linked oligosaccharide processing of combined alpha. The oligosaccharides of LH dimer were endo H resistant, while those of CG dimer remained partially endo H sensitive. Thus, despite a high degree of homology between LH beta and CG beta, the two subunits differ in their secretion as free subunits, their rate of assembly with alpha subunit, and in their effect on the N-linked oligosaccharide processing of combined alpha.

Animals↗

Biosynthesis of sulfated asparagine-linked oligosaccharides on bovine lutropin.

The asparagine-linked oligosaccharides on bovine lutropin (bLH) are unusual, containing GalNAc and sulfate but no galactose or sialic acid. Oligosaccharides from metabolically radiolabeled or purified bLH consist of non- (neutral), mono- (S-1), and di- (S-2) sulfated structures. We have previously shown that S-2 is a complex type oligosaccharide bearing two peripheral branches with the sequence SO4----GalNAc----GlcNAc attached to a typical Man3GlcNAc2 core (Green, E.D., van Halbeek, H., Boime, I., and Baenziger, J.U. (1985) J. Biol. Chem. 260, 15623-15630). We have now characterized the S-1 oligosaccharides on bLH which, in contrast to S-2, consist of several different structures of both the hybrid and complex types. The sulfate on S-1 oligosaccharides is located exclusively within the peripheral sequence SO4----GalNAc----GlcNAc. The GalNAc bearing hybrid structures, either with or without sulfate, cannot be processed to mono- or disulfated complex oligosaccharides due to the inability of either alpha-mannosidase II or GlcNAc-transferase II to act on GalNAc containing oligosaccharides. Since both Gal and GalNAc are added to oligosaccharides on some pituitary hormones, for example bovine and ovine follitropin and human lutropin, the Gal- and GalNAc-transferases appear to be key elements in regulating the synthesis of sulfated oligosaccharides on bLH and the other pituitary glycoprotein hormones.

Acetylgalactosamine↗

A map of the hCG beta-LH beta gene cluster.

The beta-subunit of human chorionic gonadotropin (hCG beta) is reportedly encoded by as many as seven non-allelic genes or pseudogenes. Previous studies have identified a cluster of three hCG beta gene copies and the single-copy lutropin-beta subunit (LH beta) gene, but overlap of this cluster with two additional pairs of hCG beta genes has not been demonstrated, despite the isolation of 18 genomic clones. To define the number and organization of non-allelic hCG beta gene copies, genomic Southern blot analyses were performed using hCG beta cDNA and gene-flanking unique-sequence probes. The data show the linear arrangement of six genes (or pseudogenes) and show that the hCG beta-IH beta gene cluster is present in a single 58-kilobase EcoRI fragment. Our map of the cluster indicates which of the cloned hCG beta genes reflect somatic genotypes rather than recombinant artifacts and will thus permit investigation of factors regulating expression during gestation.

Bacteriophage lambda↗

Expression of different-sized placental alkaline phosphatase mRNAs in placenta and choriocarcinoma cells.

The expression of human placental-type alkaline phosphatase (ALPase) in the placenta and in three choriocarcinoma cell lines was examined by translation in vitro and RNA blot analysis using a cDNA for placental ALPase. Placental RNA directed the synthesis of two polypeptides that could be immunoprecipitated with antiserum to placental ALPase. Translation of RNA from the choriocarcinoma cell lines, with or without sodium butyrate treatment, yielded a single immunoprecipitable product of molecular weight intermediate between those of the products from the placenta mRNA. Two cDNA clones for placental ALPase were isolated by antibody screening of a placental cDNA library constructed in lambda gt11. The overlapping cDNAs include 462 nucleotides of coding sequence. RNA blot analysis has confirmed that induction of placental-type ALPase levels during placental development is accompanied by an increase in steady-state placental ALPase mRNA concentrations. Examination of the mRNAs revealed a placental ALPase mRNA of 3.0 kilobases (kb) and a distinct choriocarcinoma placental-type ALPase mRNA of 2.6 kb, implying that transformation of normal to malignant trophoblast is associated with the expression of a distinct placental-type ALPase gene transcript and its protein product.

Alkaline Phosphatase↗

Structural analysis of the polymorphic 3' region of the human chorionic gonadotropin-alpha gene in normal placenta and choriocarcinoma cells.

We previously examined the segregation patterns of two polymorphic restriction enzyme sites for EcoRI and HindIII in the 3'-flanking region of human CG-alpha gene in placenta and choriocarcinoma. We observed that a unique combination of restriction sites predominates in choriocarcinoma while this pattern was rare in placenta, suggesting a functionally important site in this region of genome. Genomic libraries were constructed from DNA derived from placenta and from the choriocarcinoma cell line JAr to examine the DNA sequence responsible for these polymorphic sites. Several clones were isolated; restriction fragments containing the polymorphic sites were subcloned into pBR322, and the stretch of DNA encompassing the polymorphic sites were sequenced. No apparent DNA rearrangements were observed; sequence analysis showed that both of the polymorphic sites were caused by single base pair mutation in the recognition sequence of each enzyme. Three new polymorphic sites were identified in the 3' region of the hCG-alpha gene. These data indicate that major DNA rearrangements in the 3' region of the gene are not associated with choriocarcinoma. However, analysis of the polymorphic sites revealed that there is a linkage disequilibrium among these sites which may extend to a putative oncogene which is responsible for developing choriocarcinoma.

Base Sequence↗