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J C Cross

Publications and source records attributed to J C Cross.

At least 55 records · Page 3Linked to original sources

Hxt encodes a basic helix-loop-helix transcription factor that regulates trophoblast cell development.

Trophoblast cells are the first lineage to form in the mammalian conceptus and mediate the process of implantation. We report the cloning of a basic helix-loop-helix (bHLH) transcription factor gene, Hxt, that is expressed in early trophoblast and in differentiated giant cells. A separate gene, Hed, encodes a related protein that is expressed in maternal deciduum surrounding the implantation site. Overexpression of Hxt in mouse blastomeres directed their development into trophoblast cells in blastocysts. In addition, overexpression of Hxt induced the differentiation of rat trophoblast (Rcho-1) stem cells as assayed by changes in cell adhesion and by activation of the placental lactogen-I gene promoter, a trophoblast giant cell-specific gene. In contrast, the negative HLH regulator, Id-1, inhibited Rcho-1 differentiation and placental lactogen-I transcription. These data demonstrate a role for HLH factors in regulating trophoblast development and indicate a positive role for Hxt in promoting the formation of trophoblast giant cells.

Amino Acid Sequence↗

Implantation and the placenta: key pieces of the development puzzle.

The mammalian embryo cannot develop without the placenta. Its specialized cells (trophoblast, endoderm, and extraembryonic mesoderm) form early in development. They attach the embryo to the uterus (implantation) and form vascular connections necessary for nutrient transport. In addition, the placenta redirects maternal endocrine, immune, and metabolic functions to the embryo's advantage. These complex activities are sensitive to disruption, as shown by the high incidence of early embryonic mortality and pregnancy diseases in humans, as well as the numerous peri-implantation lethal mutations in mice. Integration of molecular and developmental approaches has recently produced insights into the molecules that control these processes.

Animals↗

Multiple regulatory elements are required to direct trophoblast interferon gene expression in choriocarcinoma cells and trophectoderm.

Interferon-tau (IFN tau) is produced exclusively by the trophectoderm during the peri-implantation stage of pregnancy in ruminant ungulate species. Human choriocarcinoma cells (Jar) stably transfected with 1.8 kilobases of promoter from a bovine IFN tau gene ahead of a human GH (hGH) reporter gene constitutively synthesize hGH, but expression is not increased further by exposure to Newcastle disease virus. This and earlier experiments suggest that the transcriptional cues regulating IFN tau expression are distinct from those operating on other type I IFN genes. Transient transfection experiments reveal that two distinct promoter regions are required for full constitutive expression: one proximal (to position -126), which directs basal expression, and a more distal promoter region (positions -280 to -400), which acts as an enhancer. Nuclear extracts prepared from ovine conceptuses during the period of IFN tau expression interact with the proximal promoter region (positions -34 to -126) to form several complexes of high electrophoretic mobility. Although nucleotide sequence motifs potentially capable of binding the transcription factor IRF-1 are present in this region, IRF-1 does not transactivate the IFN tau gene. The distal part of the promoter contains only one region (-322 to -358) that forms a complex with these conceptus nuclear extracts. Both proximal and distal gel shift patterns become dramatically different when IFN tau gene expression ceases, perhaps reflecting the appearance of transcriptional repressors. Together these experiments support the conclusion that the control of IFN tau gene expression is very different from that of other type I IFN genes and that trophoblast-specific expression depends upon distal as well as proximal promoter regulatory elements.

8-Bromo Cyclic Adenosine Monophosphate↗

Transactivation by hepatitis B virus X protein is promiscuous and dependent on mitogen-activated cellular serine/threonine kinases.

The X protein of hepatitis B virus (HBV-X) can act as a transactivator of transcription but its mechanism of action remains obscure. We have analyzed HBV-X transactivation in several cell types using 13 unrelated viral and cellular promoters and found that transactivation is more or less apparent in most cell types and is promiscuous and unrelated to specific sequence motifs within the target promoters. In general, though, HBV-X appears to act on enhancer elements since HBV-X had no effect on a minimal promoter, whereas HBV-X was able to transactivate after insertion of an AP-1 minienhancer. Several lines of evidence exclude the possibility that HBV-X interacts directly with the AP-1 enhancer or its binding proteins and suggest that the proximal target of HBV-X is peripheral to the transcription complex. This hypothesis is supported by the observation that inhibition of serine/threonine kinases, which regulate AP-1 activity (phorbol ester down-regulation or staurosporine inhibition of protein kinase C and a dominant negative mutant of Raf-1), blocked the ability of HBV-X to transactivate without affecting basal promoter activity. Furthermore, basal transcription from the AP-1-dependent promoter was increased by overexpression of protein kinase C and Raf-1 but HBV-X was unable to further stimulate, indicating that these kinases act subsequently to HBV-X. These data suggest that transactivation by HBV-X is an indirect result of the activation of cellular serine/threonine kinases including protein kinase C and Raf-1. This mode of action implies that HBV-X may affect other cellular processes, besides transcription, that are regulated by these kinases.

Animals↗

Genes for the trophoblast interferons and their distribution among mammals.

The trophoblast interferons (IFN), ovine and bovine trophoblast protein-1 (oTP-1 and bTP-1 respectively), possess many properties in common with other Type I IFN, including antiviral and antiproliferative activities. However, they differ from other IFN subtypes in terms of their specific pattern of expression and poor responsiveness to viral stimulation. We describe here data that suggest that the trophoblast IFN genes are also distinct from other Type I IFN genes with respect to species distribution, promoter organization and transcriptional regulation. These results have important implications in terms of trophoblast IFN gene evolution and add credence to the concept that the trophoblast IFN genes are a distinct IFN gene subtype well suited for their role in early pregnancy.

Animals↗

Role of interferons in maternal recognition of pregnancy in ruminants.

It has recently become evident that a type I interferon (IFN) subtype signals the presence of a viable conceptus to the mother during early pregnancy in cattle, sheep, and related mammalian species. This IFN, which is a product of the epithelium (trophectoderm) of the expanding trophoblast, is expressed in extremely large quantities for a few days just prior to implantation. It appears to be involved in modulating the release of the luteolytic hormone, prostaglandin F2 alpha, from the uterine endometrium and, hence, preventing the destruction of the corpus luteum that normally occurs at the end of an estrous cycle if an egg has not been fertilized. These trophoblast IFN have antiviral, antiproliferative, and immunomodulatory properties quite similar to other type I IFN, such as IFN-alpha, -beta, and -omega. However, they constitute a structurally and serologically distinct subtype. In addition, they are poorly inducible by virus, and the promoter regions of their genes are organized differently than other type I IFN. The genes for these trophoblast IFN are confined to ruminant species in the Artiodactyla order and probably evolved from IFN-omega less than 55 million years ago. There is no evidence for comparable production of type I IFN by trophoblast and placental tissues of mammals outside this ruminant group. Recent experiments have indicated that IFN treatment may have value in improving reproductive performance of sheep when provided during the period of maternal recognition of pregnancy, when much embryonic loss is believed to occur.

Animals↗

Constitutive and trophoblast-specific expression of a class of bovine interferon genes.

The early conceptus in sheep and cattle secretes a low molecular weight protein called ovine and bovine trophoblast protein 1 (TP-1) that is critical for establishment of pregnancy. TP-1 is a type I interferon (IFN) and is most related to IFN-omega. Here we have determined if TP-1 genes are regulated similarly to other type I IFNs. Single day 18 bovine conceptuses secrete approximately 10(5) units of IFN antiviral activity per hour in culture, amounts approximately 300 times higher than those produced by Sendai virus-induced leukocytes. Although conceptuses express mRNA for IFN-alpha, IFN-omega, and TP-1, TP-1 constitutes greater than 99% of the IFN produced. In contrast, leukocytes produced predominantly IFN-alpha, although TP-1 mRNA is inducible by Sendai virus to very low levels. TP-1 mRNA is detectable by Northern analysis in conceptuses from early pregnancy but is absent in late gestation placenta and several adult tissues. Transfected bovine TP-1 genes are expressed in human choriocarcinoma (JAR) cells in the absence of any specific stimulus, whereas these cells do not secrete antiviral activity constitutively or after transfection with a bovine IFN-omega gene. The transfected TP-1 gene is not expressed in nontrophoblast cells (mouse L929 and hamster Chinese hamster ovary), however. The 5' promoter region of the TP-1 gene is sufficient to direct trophoblast-specific expression onto a human growth hormone reporter gene in JAR cells. Deletion of the promoter from -450 to -126 results in a 4- to 5-fold decrease in expression. Together these data demonstrate that the genes for TP-1 are inducible by virus but are expressed preferentially in trophoblast cells and are functionally distinct from IFN-omega genes.

Animals↗

The genes for the trophoblast interferons and the related interferon-alpha II possess distinct 5'-promoter and 3'-flanking sequences.

The genes for trophoblast interferons (IFN) bovine trophoblast protein-1 (bTP-1) and ovine trophoblast protein-1 (oTP-1) are expressed massively in the trophectoderm of preimplantation bovine and ovine concepti during the period of maternal recognition of pregnancy. These 172-amino acid IFN are closely related to the IFN-alpha II, a family of "long" IFN expressed in virus-induced leukocytes. Genomic Southern blotting with a full-length bTP-1 cDNA revealed about 15 genes that bind the probe with varying intensities. By using more specific probes for the 3'-ends of the cDNA, we have shown that only four to five of these represent bTP-1 genes, whereas no more than another four are IFN-alpha II. Genes for bTP-1 and IFN-alpha II, all of which are intronless, have been isolated from bovine genomic libraries, and their nucleotide sequences were compared. Additional bTP-1 genes and two distinct oTP-1 genes have been isolated from bovine and ovine genomic DNA by using the polymerase chain reaction procedure in conjunction with specific 3'- and 5'- primers (derived from the bTP-1 gene sequences determined above). The promoter region up to 100 bases upstream from the transcription start sites of the trophoblast IFN are almost completely conserved across different genes and across species, yet show only limited sequence identity with IFN-alpha II. Two putative binding regions for interferon regulatory factor-1 as well as several GAAANN motifs (where N is any nucleotide) that have been implicated in viral responsiveness of alpha 1- and beta-IFN genes are retained at identical positions in all of the trophoblast genes. Putative interferon regulatory factor-1-binding nucleotide hexamers and GAAANN motifs are also present in the IFN-alpha II genes, but these are organized very differently than in the trophoblast IFN genes. A GAAATG motif is present in IFN-alpha II promoters but is absent in trophoblast IFN genes. Based on the evidence presented, it is proposed that the trophoblast interferons constitute a separate subclass of IFN-alpha distinct from IFN-alpha II and IFN-alpha I.

Animals↗

Unique features of the trophoblast interferons.

The trophoblast interferons (IFN) are Type I IFN with about 50% amino acid sequence identity to the leukocyte IFN (IFN-alpha). They are the major secretory products of the trophoblast of ruminant ungulate species during pregnancy in the period immediately preceding attachment and implantation when they have been implicated in the phenomenon known as maternal recognition of pregnancy. The trophoblast IFN have antiviral and antiproliferative activities typical of other Type I IFN, but unlike IFN-alpha, -beta and -omega are poorly responsive to viral induction and have a highly restricted pattern of expression. Nevertheless, a recombinant bovine IFN-alpha can mimic many of the properties of the trophoblast IFN and has been used pharmacologically to improve pregnancy success in sheep. It still remains unclear, however, whether the trophoblast IFN have unique biological properties or whether they are unusual merely by virtue of the location, magnitude and temporal nature of their expression at a critical time during pregnancy.

Animals↗

Induction of trophoblastic interferon expression in ovine blastocysts after treatment with double-stranded RNA.

Ovine trophoblast protein-1 (oTP-1) is an interferon (IFN) related to the IFN-omega. The objectives of this research were: (i) to attempt to induce oTP-1 mRNA in day-11 ovine conceptuses with polyinosinic-polycytidylic acid (poly(I).poly(C], and (ii) to determine if IFN-omega mRNA is also produced on day 11 of gestation. In experiment I, conceptuses were cultured in presence of 100 micrograms/ml poly(I).poly(C) (n = 5) or medium alone (control, n = 3) for up to 8 h. In situ hybridization was used to assess effects of treatment on mRNA concentrations for oTP-1 and actin (positive hybridization control). Poly(I).poly(C) increased oTP-1 mRNA concentrations approximately 2.5-fold (p less than 0.01), but had no effect on actin mRNA. In experiment II, the presence of mRNA for oTP-1 and ovine IFN-omega was determined by using reverse transcription-polymerase chain reaction (RT-PCR) analysis of conceptus total RNA coupled with Southern blot hybridization of the PCR reaction products with specific cDNA probes. oTP-1 mRNA was detectable in all poly(I).poly(C)-treated (n = 7) and control (n = 6) conceptuses, whereas IFN-omega mRNA was detected in only three of seven poly(I).poly(C)-treated conceptuses and not in any controls. Together these results demonstrate that expression of oTP-1 mRNA can be enhanced by treatment with poly(I).poly(C) and that oTP-1 is the primary but not the only type I-IFN inducible in conceptuses on day 11 of gestation.

Animals↗

Slowed transcription and rapid messenger RNA turnover contribute to a decline in synthesis of ovine trophoblast protein-1 during in vitro culture.

Ovine trophoblast protein-1 (oTP-1) is produced in massive amounts by conceptuses during the Day-12-20-period of early pregnancy. The rate of production of oTP-1 declines during culture of conceptuses, however, suggesting a role for critical intrauterine factors for continued production. The present study was conducted to define the mechanism responsible for the in vitro decline in oTP-1 synthesis. Over 24 h culture, synthesis of oTP-1 was initially rapid but then declined such that there was little increase in either the protein or its antiviral activity after 12 h. By contrast, the release of total protein into the medium continued at an approximately linear rate for the entire 24-h period of culture. By using in situ hybridization to tissue sections and dot-blot analysis of tissue extracts with labeled cDNA probes, it was shown that the quantity of oTP-1 mRNA fell 3- to 5-fold during culture, whereas the amount of actin mRNA remained relatively constant. To determine whether this selective fall in levels of oTP-1 mRNA resulted from decreased transcription rate and/or high turnover rate of existing mRNA, conceptuses were either provided continuously with [3H]uridine for 24 h or labeled for 9 h and then exposed to medium enriched in unlabeled uridine and cytidine for a further 15 h. Specific incorporation of 3H into oTP-1 mRNA was assessed by hybridization to excess oTP-1 cDNA immobilized on nitrocellulose membranes. In the continuous labeling study, 3H in total RNA increased at an approximately linear rate for at least 18 h, whereas the content of 3H in oTP-1 mRNA peaked at 9 h and declined about 10-fold by 24 h.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of injected bovine interferon-alpha I1 on estrous cycle length and pregnancy success in sheep.

In Exp. 1 twice daily i.m. injections of 2 mg recombinant bovine IFN-alpha I1 (rboIFN-alpha I1) (N = 24) or placebo (N = 25) were administered to ewes from Day 12 to Day 16 during a normal oestrous cycle. Treatment did not increase (P greater than 0.10) oestrous cycle length (20.7 +/- 1.2 versus 18.5 +/- 1.4 days). In Exp. 2, ewes were injected twice daily with 2 mg IFN (N = 34) or placebo (N = 36) from Days 11 to 18 after natural mating. The rboIFN-alpha I1 significantly (P = 0.05) improved pregnancy rate (79% versus 58%) as determined by a failure of ewes to return to oestrus within 50 days. The number of ewes that lambed was greatest in the rboIFN-alpha I1-treatment group (71% versus 50%; P = 0.07), and no teratogenic effects were observed in the young born to IFN-treated ewes. The study was repeated a second year with a more fecund group of ewes (Exp. 3). More (P = 0.08) ewes injected with rboIFN-alpha I1 (58/65) than placebo-treated ewes (48/61) were judged pregnant by ultrasound. Again more ewes lambed (55 versus 45) and more lambs were born (98 versus 80) from the rboIFN-alpha I1-treated group. Combining the data from both studies revealed a significant (P = 0.01) effect of treatment. The amount of antiviral activity in jugular vein blood of ewes injected with rboIFN-alpha I1 (2 mg) was determined over time in Exp. 4. Activity rose to a maximum (approximately 450 IRU/ml) within 1-2 h and declined by over 75% in 24 h. Single injections of 1, 2 and 5 mg in buffer or 2 mg emulsified in sesame oil all gave similar profiles of antiviral activity in jugular blood over a 48-h period. In Exp. 5, antiviral activity was measured in uterine vein, ovarian artery and jugular vein serum of untreated pregnant (N = 7) and non-pregnant (N = 11) ewes at Day 15 after mating. Activity was detected in the uterine vein (58 +/- 19 IRU/ml) of all pregnant ewes. The observations in Exps 1-5 are consistent with a role for conceptus-derived IFN-alpha in maternal recognition of pregnancy and suggest that supplemental IFN-alpha might be useful in improving pregnancy success in sheep.

Animals↗

The polypeptides and genes for ovine and bovine trophoblast protein-1.

Ovine and bovine trophoblast protein-1 (oTP-1 and bTP-1) have been strongly implicated as antiluteolytic agents and responsible for maternal recognition of pregnancy in sheep and cattle, respectively. Both are interferons (IFN) belonging to the IFN-alpha family, but their length (172 residues versus 166 for most IFN-alpha) places them in an unusual subclass (the IFN-alpha II). The various isoforms of oTP-1 and bTP-1 produced by trophoblast tissue appear to arise in part from translation of multiple mRNAs which are themselves the products of distinct genes. These genes, like those for other IFN-alpha, are without introns. However, the genes for oTP-1 and bTP-1 form a distinct subgroup within the IFN-alpha II on the basis of their overall primary sequences and the high conservation of the 3'-untranslated ends of their transcription units. The bTP-1 genes also differ from the bovine IFN-alpha II in the organization of the promoter regions upstream from the transcription start site. Nevertheless, computer-aided analysis of the primary polypeptide sequences of oTP-1 and bTP-1 indicates that the molecules are likely to have approximately the same shapes and dimensions as all other IFN-alpha molecules. It remains to be determined whether they have unique biological properties which distinguish them from other IFN-alpha molecules.

Amino Acid Sequence↗

Characterization of the antiviral activity constitutively produced by murine conceptuses: absence of placental mRNAs for interferon alpha and beta.

Antiviral activity has been found in conceptus and placental tissues in numerous species, including mice, pigs, sheep, cattle and humans. In sheep and cattle, the antiviral activity is due to an interferon alpha (IFN-alpha), but in other species the nature of the protein(s) responsible for placental activity is unknown. The objectives of this study were to determine if the constitutive antiviral activity associated with the mouse conceptus is produced as early as the peri-implantation period, and to determine if the activity is due to an IFN-alpha or -beta. Conceptus and placental tissue explants released antiviral activity from Day 4 through at least Day 16 of gestation as measured in an agar overlay bioassay employing CHO cells challenged with vesicular stomatitis virus. This activity was neutralized by antiserum against MuIFN-alpha/beta. The same antiserum failed, however, to immunoprecipitate radiolabeled proteins from medium collected from Day 4 blastocysts cultured in the presence of L-[35S]-methionine. S1 nuclease analysis of placental RNA and screening of ectoplacental cone and extraembryonic ectoderm cDNA libraries with MuIFN-alpha and -beta probes failed to detect IFN related mRNAs, even under relatively non-stringent conditions of hybridization. Thus, while antiviral activity is produced by peri-implantation conceptuses in several diverse mammalian species, it does not appear to be due to a conserved type of IFN in all these species.

Agar↗

The production, purification, and bioactivity of recombinant bovine trophoblast protein-1 (bovine trophoblast interferon).

Bovine trophoblast protein-1 (bTP-1) is a 172-amino acid interferon- alpha that has a role in maternal recognition of pregnancy in cattle. Here we describe production of bTP-1 by recombinant procedures in Escherichia coli. A bTP-1 gene was constructed which lacked the codons representing the signal sequence and provided a Met initiation codon ahead of the TGT codon encoding Cys1 of the mature protein. This construct was placed under the control of the Trp promoter within the expression vector pTrp2. Expression occurred optimally in E. coli D112 in the absence of tryptophan and in the presence of 0.5% acid-hydrolyzed casein (casamino acids) when 0.5 mM indole acetic acid was included in the medium. The bTP-1 was deposited in inclusion bodies and accounted for as much as 27% of the total cellular protein. The inclusion bodies were isolated by differential centrifugation and washed. The bTP-1 was solubilized by use of guanidinium-HCI and 2-mercaptoethanol and allowed to renature in air. Final purification was achieved by anion exchange chromatography on DEAE-cellulose. The yield of purified product, which had an antiviral activity greater than 10(8) international reference units/mg, was approximately 20 mg/liter. The recombinant bTP-1 was relatively stable to freeze-thawing and frozen storage, and could induce the production of an acidic protein of 70,000 mol wt in cultured explants of endometrium prepared from ewes on day 13 of the estrous cycle. The latter protein is a characteristic product of interferon-alpha action on uterine tissue.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Trophoblast proteins and maternal recognition of pregnancy.

IFNs are produced by conceptus and/or placental tissues in several mammalian species. Of these IFNs, the trophoblast interferons, oTP-1 and bTP-1, are clearly the most well characterized and have been found to be members of an unusual 172-amino-acid-long IFN-alpha subfamily. Although classified as IFN-alpha IIs, they are unique in two respects. First, the 3' non-coding regions of their mRNAs differ from those of other IFN-alpha s and, secondly, oTP-1 and bTP-1 are expressed in extraordinarily large amounts during a defined period of early pregnancy. oTP-1 and bTP-1 have physiological actions which are clearly anti-luteolytic, although it is suspected that they are not the only conceptus products required to maintain the corpus luteum of pregnancy. A role for trophoblast interferons in local regulation of the uterine immune system is also anticipated. Because IFNs are known to exhibit other activities, including effects on cell proliferation, cell differentiation, and the induction of specific gene transcription in target cells, the trophoblast and/or placental interferons may also be influencing uterine function by such mechanisms. However, this question remains largely unexplored. Finally, the regulation of expression of the trophoblast interferons represents an important area of research that has the potential to lead to significant reductions in the incidence of embryonic loss in mammals.

Amino Acid Sequence↗

Interferons at the placental interface.

The antiluteolytic factors secreted by sheep and cattle conceptuses are closely related structurally to alpha-interferons (IFN-alpha s). They are known as ovine and bovine trophoblast protein-1 (oTP-1 and bTP-1), respectively. The mRNAs for oTP-1 and bTP-1 are transcribed from multiple genes and are the major translatable messages of Day 13-17 sheep conceptuses and Day 15-20 cattle conceptuses. The proteins belong to the 172-amino acid IFN-alpha II (or IFN-omega) subfamily and have the typical antiviral and antiproliferative properties of the 166-residue IFN-alpha Is. These embryonic interferons also bind to the IFN-alpha receptor, which is present in uterine endometrium in high concentrations, and can influence the production of prostaglandin F-2 alpha and the pattern of protein secretion in that tissue. Through use of in-situ hybridization procedures on tissue sections and Northern and dot blot analyses of extracted conceptus RNA, ovine oTP-1 mRNA has been shown to increase markedly around Day 13 and to decrease after about Day 15 of pregnancy. The mRNA is confined entirely to cells of the trophectoderm. Significant induction of mRNA that hybridizes to an oTP-1 cDNA occurs in response to exposure to polyI:polyC in Day 11 sheep blastocysts which normally have low levels of oTP-1 expression. However, the basis for induction in the normal progression of embryonic development remains unclear. The fact that preimplantation conceptuses of other species, e.g. pig, release substances with antiviral activity suggests that IFNs may have an important role in pregnancy that extends beyond the domestic ruminants.

Amino Acid Sequence↗