Search PubMedSearch

Biomedical subjects

F Jacob

Publications and source records attributed to F Jacob.

At least 37 records · Page 2Linked to original sources

Characterization of antigens recognized by monoclonal and polyclonal antibodies directed against uvomorulin.

Uvomorulin is a cell surface glycoprotein involved in compaction of early mouse embryo. Antibodies, either monoclonal or polyclonal, raised against a purified tryptic fragment of uvomorulin recognize, in a detergent lysate of embryonal carcinoma cells metabolically labeled with 35S, three molecules (120, 100, and 88 kDa) that are not related, as judged by peptide mapping. Only the 120-kDa form is related to the tryptic fragment of uvomorulin and, thus, is considered as the native form of uvomorulin. Although all three products are apparently detectable at the cell surface, only the 120-kDa form is glycosylated. Coimmunoprecipitation of the three different polypeptides is probably due to shared epitopes rather than to their presence in a multimeric complex.

Animals

Expression of the cytokeratin endo A gene during early mouse embryogenesis.

Expression of cytokeratin endo A has been analyzed during mouse blastocyst formation and embryonal carcinoma cell differentiation. To study the regulation of endo A expression, nuclease S1 mapping experiments have been performed on RNA extracted from two-cell to 7.5-day embryos. Low levels of endo A mRNA begin to be detectable in eight-cell embryos. The amount of this mRNA increases at the blastocyst stage, suggesting that endo A expression is regulated at the mRNA level during blastocyst formation. At this stage, in situ hybridization studies show that endo A mRNA is present in the trophectoderm but not in the inner cell mass. In 7.5-day embryos, endo A mRNAs are also detectable in the endoderm layer and in the amnion.

Animals

One gene and one pseudogene for the cytokeratin endo A.

The recombinant cDNA RecXVI, which hybridizes to the endo A mRNA, detects two specific bands on a Southern blot of EcoRI-digested genomic mouse DNA. We have screened a mouse genomic library with this cDNA and isolated these two sequences. Endo A is encoded by a 7.5-kilobase gene and by a 1.6-kilobase pseudogene devoid of introns. A repetitive sequence belonging to the B2 family is located in the third intron of the gene. We have observed that transcription of B2 sequences and of the endo A gene are mutually exclusive.

Animals

Characterization of glycopeptides isolated from membranes of F9 embryonal carcinoma cells.

From cells of a nullipotential line of embryonal carcinoma was isolated a membrane fraction enriched in the cell surface F9 antigen. More than 40% of the radioactive fucose and galactose incorporated by cells into nondialyzable material was recovered in this membrane preparation, corresponding to an approximately 10-fold purification of the labeled material. Extreme heterogeneity of membrane glycoproteins labeled with these sugars was revealed by sodium dodecyl sulfate gel electrophoresis. Glycopeptides prepared by extensive pronase digestion of membranes labeled with fucose or galactose showed properties similar to those already described for fucose-labeled glycopeptides from whole cells. Namely, large glycopeptides eluted near the excluded volume of Sephadex G-50 column were the predominant glycopeptide species, while complex glycopeptides of molecular weight around 2500 were minor components. Therefore, these large glycopeptides, characteristic of embryonal carcinoma cells, are derived mainly from a variety of glycoproteins closely associated with the membrane system, most probably cell-surface membrane of the cells. The large glycopeptides were also significantly labeled with glucosamine, but only slightly with mannose; major components of mannose-labeled glycopeptides from the membranes were high-mannose glycopeptides of low molecular weight. Several experiments excluded the possibility that the larg glycopeptides are mucopolysaccharides, glycolipids or mucin-type glycoproteins with short oligosaccharide chains.

Animals

Distinctive properties of fucosyl glycopeptides on human teratoma cells.

Fucose-labeled glycopeptides from four human teratoma cell lines of independent origin show similar elution profiles on Sephadex G-50 column chromatography. The fucosyl glycopeptides elute in two major regions: one near the void volume, the other in fractions corresponding to a molecular weight of 2500-3000. These elution profiles are very different from those obtained with the other human cell lines examined which included 3 lymphomas, 2 colon carcinomas, and HeLa. The elution profiles of the human teratomas, however, show remarkable similarities to those obtained with murine embryonal carcinoma cell culture and early mouse embryos. These results suggest that the excluded G-50 fraction may well contain glycopeptides playing a role in mammalian embryogenesis.

Carcinoma

Tropomyosin synthesis accompanies formation of actin filaments in embryonal carcinoma cells induced to differentiate by hexamethylene bisacetamide.

Hexamethylene bisacetamide (HMBA) induces in vitro the cytodifferentiation of PCC3/A/1 mouse embryonal carcinoma (EC) cells. In EC cells, actin is associated with surface structures but microfilament bundles are not seen. After 2 days of HMBA treatment, rounded EC cells are converted to flat adhesive ones with a developed cytoskeleton containing actin and tropomyosin. The ratio of actin to total proteins is constant in EC cells and their HMBA derivatives; but a striking difference is observed for one of the newly synthesized proteins (Mr 34,000) identified as tropomyosin. Synthesis of tropomyosin is followed by its association with actin microfilament bundles, as revealed by indirect immunofluorescence microscopy with specific antibodies.

Acetamides

Junctional modulation in mouse embryonal carcinoma cells by Fab fragments of rabbit anti-embryonal carcinoma cell serum.

Mouse embryonal carcinoma PCC4 cells are connected by extensive gap and tight junctions. When the cells are incubated in a medium containing Fab fragments against embryonal carcinoma F9 cells, they round up and a process of junctional removal is initiated. In particular, gap junctions are internalized and after 30 hr of incubation with the anti-F9 Fab fragments both tight and gap junctions are no longer present at the cell surface; however, the cells are still in contact by means of small attachment sites.

Animals

Association of the H-Y male antigen with beta2-microglobulin on human lymphoid and differentiated mouse teratocarcinoma cell lines.

The expression of the H-Y antigen has been tested on several human lymphoid lines and mouse teratocarcinoma cell lines during differentiation. The human male lymphoid cell line Raji is a very useful target for studies of the H-Y antigen by lymphocytotoxicity test with rat anti-H-Y sera. With a few exceptions, all cells carrying the Y chromosome were H-Y positive. One of the exceptions is the human Daudi cell line which, besides lacking H-Y antigen, also lacks beta2-microglobulin. We have studied a possible association between the H-Y antigen, beta2-microglobulin, and HLA antigen with redistribution experiments. The results strongly suggest that H-Y antigen is not associated with HLA antigens but with beta2-microglobulin.

Animals

Complexity of nuclear and polysomal polyadenylated RNA in a pluripotent embryonal carcinoma cell line.

The base-sequence complexities and relative abundance of polysomal and nuclear polyadenylated [poly(A+)] RNA sequences have been analyzed in a pluripotent embryonal carcinoma cell line. Polysomal RNA and nuclear poly(A+) RNA have a complexity representing respectively 0.5% and 2.5% of the single copy component of haploid mouse DNA (1.8 X 10(6) K base pairs). By hybridization with specific cDNAs, three abundance classes were found in polysomal poly(A+) RNA, representing respectively 31%, 33%, and 36% of the RNA, with base sequence complexities of 0.1 X 10(3), 0.9 X 10(3), and 14.5 X 10(3) kilobases. This corresponds to 7000-8000 different mRNA species of an average length of 2000 nucleotides, present on an average of 5 to 600 copies per cell. In nuclear RNA, a major class of abundance was found with a complexity of 100 X 10(3) kilobases, each sequence being present in 1 copy per nucleus. The majority of the polysomal poly(A+) RNA sequences are represented in the nuclear poly(A+) RNA but are present in a more restricted range of relative abundance implying posttranscriptional mechanisms of quantitative modulation: polysomal RNA sequences appear to be preferentially transcribed into nuclear cDNA suggesting a preferential location of these sequences close to poly(A) sequences. The presence of a specialized gene product, globin specific RNA, could not be detected either in the nuclear or polysomal compartments of embryonal carcinoma cells, even at levels that would have detected one sequence per 50 cells.

Base Sequence