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V Asundi

Publications and source records attributed to V Asundi.

8 recordsLinked to original sources

Regulated expression of syndecan in vascular smooth muscle cells and cloning of rat syndecan core protein cDNA.

cDNA encoding the core protein of rat syndecan was cloned from a neonatal rat aortic cDNA library by polymerase chain reaction amplification. Expression of syndecan mRNA in rat aortic vascular smooth muscle (VSM) cells was demonstrated by reverse transcriptase-linked polymerase chain reaction amplification of syndecan sequences using total RNA from rat aortic VSM cells as templates. Polyclonal antibodies against rat syndecan core protein were produced by immunizing rabbits with a recombinant fusion protein containing a fragment of the extracellular domain. The anti-syndecan antibodies immunoprecipitated a large 35SO4-labeled molecule synthesized by cultured rat aortic VSM cells. The immunoprecipitated molecule was identified as a hybrid proteoglycan, based on results of alkaline, nitrous acid, and chondroitinase ABC digestions. On immunoblots the antibodies recognized a proteoglycan of greater than 200 kDa, with a core protein size after deglycosylation of approximately 50 kDa. The anti-syndecan antibodies stained cultured rat aortic VSM cells as well as tissue sections of neonatal and adult rat aortas in the medial, smooth muscle layer. On Northern blots of RNA isolated from cultured VSM cells, a syndecan cDNA probe hybridized to a major RNA species of 2.6 kilobases. Quantitative Northern blot analysis of total RNA isolated from VSM cells harvested at different cell densities revealed a decrease in syndecan mRNA levels with increased cell density. These results demonstrate the regulated synthesis of syndecan by rat VSM cells.

Amino Acid Sequence↗

Effect of anti-Ig on rabbit B cell function and Ig expression.

We have examined the effect which xenogeneic anti-Ig has on rabbit B cell function and Ig expression in an effort to understand the phenomenon of antibody mediated suppression. Treatment of rabbit lymphocyte cultures with xenogeneic anti-rabbit Ig causes 2.5-3.8 fold decrease in the level of Ig secreting cells with little or no long-term effect on surface Ig. This suppression in B cell secretory function is not the result of suppression of Ig gene expression since xenogeneic anti-rabbit Ig treatment causes a 1.7-2.7 fold increase in Ig L and H chain mRNA levels. Collectively, these data are consistent with the hypothesis that antibody mediated suppression of B cell function occurs at a post-transcriptional level involving either the secretory pathway of Ig expression and/or blockage in B cell differentiation.

Animals↗

Rabbit Ig kappa 1b6 gene structure.

Previous studies employing Southern blot analyses have detected multiple kappa-homologous sequences within EcoRI-digested DNA isolated from kappa 1b6 homozygous rabbits and kappa 1b6 L chain secreting RMH H158 cell line. These results are very unexpected because the published partial protein sequence for the kappa 1b6 C region is incompatible with an EcoRI restriction endonuclease recognition sequence at the nucleotide level for this allotype. To determine their identity, the kappa-homologous sequences were isolated from DNA extracted from a kappa 1b6 L chain secreting RMH H158 cell line by molecular cloning. Structural analyses demonstrated these sequences to contain genetic information encoding the majority of the kappa 1b6 L chain gene locus. The protein sequence deduced from the kappa 1b6 C region gene was shown to differ from the published partial kappa 1b6 C region protein sequence at five amino acid positions. One of these differences results in a glycine to serine interchange that introduces an EcoRI restriction endonuclease recognition site within the kappa 1b6 C region gene. Subsequent genomic Southern blot analyses confirmed this structural assignment. Based on these data, the EcoRI-sensitive kappa-homologous fragments present within the genomes of the RMH H158 cell line and kappa 1b6 homozygous rabbits represent the nominal kappa 1 gene and not an alternative kappa isotype or kappa pseudogene. Rabbit Ig kappa 1 allelic nucleotide sequence homology comparisons have shown the isolated kappa 1b6 J-C gene locus to display common structural features previously identified in other kappa 1 alleles.

Amino Acid Sequence↗

Vascular smooth muscle biglycan represents a highly conserved proteoglycan within the arterial wall.

Two overlapping cDNA clones containing sequences homologous to human bone biglycan were isolated from a rat vascular smooth muscle (VSM) cell cDNA library. Nucleotide sequence analysis demonstrated that these clones encoded the rat VSM biglycan complete core protein sequence. A high degree of genetic conservation was observed for biglycan since nucleotide sequence homology comparisons revealed an 88% homology occurring between rat and human biglycan cDNA coding regions. The deduced core protein for the secreted form of VSM biglycan was found to be composed of ten leucine-rich repeating units whose consensus sequence was similar to that present in human bone and bovine cartilage biglycans. Protein homology comparisons revealed that the mature rat VSM biglycan core protein was 97% homologous to both human bone and bovine cartilage biglycan core proteins. Most of the amino acid substitutions in the secreted form of rat VSM biglycan are of the conservative type thereby maintaining the hydrophobic property of this proteoglycan within the arterial wall. The highest frequency of amino acid substitutions occurring between rat, bovine and human biglycan core proteins was found to reside within a small hypervariable region located near the N-terminus of these proteoglycans. Rat VSM biglycan was found to contain dinucleotide repeat elements located in the 3' untranslated region of its mRNA which may influence the expression of this transcript. Biglycan mRNA levels were not found to vary significantly as a function of VSM cell density. However, biglycan transcript levels did vary significantly as a function of VSM cell growth state. Similar studies revealed that collagen, fibronectin, and laminin were able to influence biglycan mRNA levels in quiescent VSM cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Detection of large cDNA inserts within crude lambda gt11 lysates: a rapid and sensitive method.

A method is presented for the isolation of bacteriophage lambda DNA and the rapid identification of large cDNA inserts within crude phage lysates. The primary screening of a lambda gt11 cDNA library with a 32P-radiolabeled cDNA probe yielded 21 putative positive clones. A phage "spot-blot" analysis was employed to quickly screen these potential recombinants. This eliminated 9 of the 21 clones as the result of false positive signals. The remaining 12 recombinant phage were amplified on agarose-based media, and phage DNA was isolated using a modified plate lysate procedure. The DNA thus obtained from these crude lysates could be easily digested with EcoRI and examined by Southern blot analysis. The resulting blot was hybridized with the same cDNA probe used in the initial screening of the library. Thus, two clones harboring the longest cDNA insert were identified from a mixed phage population and were subsequently plaque purified. The procedure is rapid, sensitive, reproducible, inexpensive and allows the processing of several clones at once without sacrificing the quality or yields of the DNA preparation. Furthermore, the method obviates the need for plaque purifying all the positives obtained from the initial screening of a cDNA library.

Bacteriophage lambda↗

Characterization of extracellular matrix proteoglycan transcripts expressed by vascular smooth muscle cells.

Northern blot analysis using intraspecies and cross-species cDNA probes encoding a variety of proteoglycan (PG) core proteins was employed to examine in vitro and in vivo vascular smooth muscle cell (VSMC) extracellular matrix (ECM) PG gene expression. Similar studies were performed using a cDNA probe encoding the rat chondrosarcoma link protein. VSMCs maintained in vitro as well as in vivo expressed a 1.8 kb transcript homologous to a cDNA encoding the bovine bone small PGII. Densitometric analysis revealed an 11-fold increase in the in vivo level of this transcript when compared to an equivalent amount of RNA extracted from rat VSMCs maintained in vitro. Rat aorta medial tissue contained approximately a 10-fold higher level of the bovine bone PGII homologous transcript when compared to rat chondrosarcoma tissue. A 2.9 kb transcript homologous to a cDNA encoding the human bone small PGI (biglycan) was detected in poly(A)+ RNA isolated from rat VSMCs maintained in vitro as well as within rat thoracic aorta medial tissue. Densitometric analysis revealed a 0.55-fold increase in the in vitro level of the PGI transcript when compared to in vivo levels. Rat chondrosarcoma expressed approximately a 3-fold higher level of a human bone PGI homologous transcript when compared to rat aorta medial tissue. A 7.3 kb and an 8.4 kb transcript homologous to a cDNA encoding the rat chondrosarcoma large hyaluronic acid (HA) binding chondroitin-sulfate (CS) PG core protein was detected in poly(A)+ RNA extracted from rat VSMCs maintained in vitro.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Chemical synthesis of a biologically active gene for human immune interferon-gamma. Prospect for site-specific mutagenesis and structure-function studies.

A 453-base pair DNA duplex consisting of a gene coding for human interferon-gamma and initiation and termination signals plus appropriate restriction enzyme sites for plasmid insertion has been totally synthesized. The synthesis involved preparation of 66 oligodeoxynucleotides by a modified, solid phase phosphite procedure and enzymatic ligation of the oligonucleotides. The gene, when inserted into a previously constructed expression vector, was expressed in Escherichia coli, demonstrating functional activity for the synthetic gene. Several strategically located restriction cleavage sites have been introduced into the sequence. This provides a convenient system for site-specific mutagenesis for structure-function studies.

Amino Acid Sequence↗

High-level expression of a chemically synthesized gene for human interferon-gamma using a prokaryotic expression vector.

A chemically synthesized gene for human interferon-gamma has been cloned into a prokaryotic expression vector under the regulation of a synthetic constitutive transcriptional-translational control unit that contains a strong bacteriophage T5 early promoter and a strong ribosome-binding site. Cells harboring the recombinant plasmid express high levels (4 X 10(9) units per liter of culture) of antiviral activity specific for interferon-gamma. Analysis of total cell lysates on NaDodSO4/polyacrylamide gels revealed a 17,200-dalton protein, expected for the nonglycosylated form of human interferon-gamma, that constitutes greater than 15% of total cell protein.

Amino Acid Sequence↗