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H Pande

Publications and source records attributed to H Pande.

At least 37 records · Page 2Linked to original sources

Genomic localization of the gene encoding a 32-kDa capsid protein of human cytomegalovirus.

We have determined the map position of a viral gene encoding a 32-kDa late structural protein of human cytomegalovirus (HCMV) using a murine monoclonal antibody. This monoclonal antibody was reactive with two protein bands of 32 and 27 kDa in HCMV-infected cell lysates and with a single 32-kDa protein band in HCMV virions as detected by immunoblot analysis. When purified HCMV envelope preparation was used for immunoblotting, the monoclonal antibody did not display a detectable band. We used this monoclonal antibody to screen a cDNA library that was constructed from poly(A)+ RNA of late HCMV-infected cells and cloned into the expression vector lambda gt11. A cDNA clone that expressed an immunoreactive epitope of the late HCMV protein fused to beta-galactosidase was identified. Probing the restriction digests of HCMV (Towne and AD169) DNA with insert DNA from the immunoreactive lambda gt11 clone permitted us to localize the coding sequence within the long unique region between map coordinates of 0.62 and 0.64 of HCMV Towne and AD169 genomes. Using the same probe, a single transcript of 1.4 kb was detected in total RNA from HCMV-infected cells at late times after infection.

Animals↗

Demonstration of structural differences between the two subunits of human-plasma fibronectin in the carboxy-terminal heparin-binding domain.

Structural differences between the two subunits of human plasma fibronectin were studied by analyzing the carboxy-terminal heparin-binding domain (Hep-2). Two fragments (29 kDa and 38 kDa) derived from the Hep-2 domain were purified from thermolysin-digested human plasma fibronectin. Identical NH2-terminal sequences were obtained for both fragments through 16 Edman cycles. Neither domain contained the 90-amino-acid extra domain which is predicted by cDNA analysis of the cellular form of fibronectin. We have examined the primary structures of the 29-kDa and 38-kDa Hep-2 domains produced from the two chains of plasma fibronectin by analyzing the tryptic peptides by fast atom bombardment/mass spectrometry and comparison with the predicted fragments deduced from the corresponding cDNA-derived peptide sequences. Peptides that were unique to each domain were further characterized by microsequence analysis. The two domains showed identical amino acid sequences through 274 residues, followed by a region of variability. The 29-kDa domain contains 279 amino acids with an estimated relative molecular mass (Mr) of 30,460. This domain is located in the heavy chain of plasma fibronectin and contains three repeats of type III sequences plus a portion of the connecting segment (IIICS) region. The 38-kDa domain contains 359 amino acids and one O-linked glycosyl unit for an estimated Mr of 39,263. This domain is from the light chain of plasma fibronectin and contains four repeats of type III sequences with the deletion of the entire 120-amino-acid IIICS area. Secondary structure analysis by Chou/Fasman and circular dichroism reveals extensive beta-sheet structure for these domains. Key sulfhydryl and glycosylation sites are located near the mRNA splice junctions for the two chains. It is postulated that the splice junctions are adjacent to a flexible domain joining two regions of extensive beta-sheet structure.

Amino Acid Sequence↗

Sequence analysis of carcinoembryonic antigen: identification of glycosylation sites and homology with the immunoglobulin supergene family.

A direct method for the determination of N-linked glycosylation sites in highly glycosylated proteins is described. Carcinoembryonic antigen (CEA) and a nonspecific crossreacting antigen (NCA) were chemically deglycosylated, and peptide maps were prepared by reverse-phase HPLC. The peptides were sequenced on a gas-phase microsequencer, and glycosylation sites were identified as the phenylthiohydantoin derivative of N-acetylglucosaminylasparagine. The sequences were confirmed by fast atom bombardment mass spectrometry. Highly homologous, extended amino-terminal sequences were determined for CEA and two NCAs, NCA-95 and NCA-55. Cysteine-containing sequences for CEA and NCA-95 show up to 95% sequence homology, and the CEA sequences also show internal sequence homologies. A comparison of the CEA sequences with known protein sequences suggests that CEA may be a member of the immunoglobulin supergene family. The protein sequence data have been used to identify a genomic DNA clone for one of the NCA antigens [Thompson, J., Pande, H., Paxton, R. J., Shively, L., Padma, A., Simmer, R. L., Todd, C. W., Riggs, A. D. & Shively, J. E. (1987) Proc. Natl. Acad. Sci. USA, in press] and a cDNA clone for CEA [Zimmermann, W., Ortlieb, B., Friedrich, R. & von Kleist, S. (1987) Proc. Natl. Acad. Sci. USA, in press].

Amino Acids↗

Molecular cloning of a gene belonging to the carcinoembryonic antigen gene family and discussion of a domain model.

Carcinoembryonic antigen (CEA) is a glycoprotein important as a tumor marker for colonic cancer. Immunological and biochemical studies have shown it to be closely related to a number of other glycoproteins, which together make up a gene family. We have cloned a member of this gene family by using long oligonucleotide probes (42-54 nucleotides) based on our protein sequence data for CEA and NCA (nonspecific cross-reacting antigen) and on human codon usage. The clone obtained (lambda 39.2) hybridizes with six probes and has a 15-kilobase insert. The 5' end of the gene is contained within a 2700-base-pair EcoRI fragment, which hybridizes with five of the six synthetic probes. Sequencing of the 5' end region revealed the location and structure of one exon and two putative intron boundaries. The exon encodes part of the leader sequence and the NH2-terminal 107 amino acids of NCA. Southern blot analysis of human normal and tumor DNA, using as probes two lambda 39.2 fragments that contain coding sequences, suggests the existence of 9-11 genes for the CEA family. One of the restriction fragments described here has been used by Zimmermann et al. [Zimmermann, W., Ortlieb, B., Friedrich, R. & von Kleist, S. (1987) Proc. Natl. Acad. Sci. USA 84, 2960-2964] to isolate partial cDNA clones for CEA. The identity of this clone was verified with our protein sequence data [Paxton, R., Mooser, G., Pande, H., Lee, T.D. & Shively, J.E. (1987) Proc. Natl. Acad. Sci. USA 84, 920-924]. We discuss a domain structure for CEA based on the CEA sequence data and the NCA exon sequence data. It is likely that this gene family evolved from a common ancestor shared with neural cell adhesion molecule and alpha 1 B-glycoprotein and is perhaps a family within the immunoglobulin superfamily.

Amino Acid Sequence↗

Monoclonal antibodies in the analysis of fibronectin isoforms generated by alternative splicing of mRNA precursors in normal and transformed human cells.

Recent results showing that a single fibronectin gene can give rise to several different mRNAs by alternative splicing have offered an explanation for fibronectin polymorphism. Here we report on monoclonal antibodies that show specificity for a fibronectin segment (ED) that can be included or omitted from the molecule depending on the pattern of splicing of the mRNA precursors. Using these monoclonals, we have quantitatively analyzed the expression of the ED sequence in human fibronectin from different sources. The results demonstrated that, at the protein level, the ED segment is not expressed in plasma fibronectin and that, in fibronectin from the tissue culture medium of tumor-derived or simian virus-40-transformed human cells, the percentage of fibronectin molecules containing the ED segment is about 10 times higher than in fibronectin from normal human fibroblasts. These results suggest that in malignant cells the mechanisms that regulate the splicing of mRNA precursors are altered.

Amino Acid Sequence↗

Primary structure of a DNA- and heparin-binding domain (Domain III) in human plasma fibronectin.

The complete amino acid sequence of a DNA- and heparin-binding domain isolated by limited thermolysin digestion of human plasma fibronectin has been obtained. The domain contains 90 amino acids with a calculated molecular weight of 10,225. The apparent molecular mass of this domain is 14 kDa when analyzed by sodium dodecyl sulfate-gel electrophoresis. The anomalously high molecular size estimation may be due to the inaccuracy of this method in the low range. The structure was established from microsequence analysis of the chymotryptic, tryptic, and Staphylococcus aureus protease peptides. The molecular ion of each of the chymotryptic peptides was obtained by fast atom bombardment mass spectrometry. The domain has a preponderance of basic residues with a net charge of +5 at neutral pH. The basic nature of the domain may account for its affinity for the polyanions, DNA and heparin. The predicted secondary structure is beta-sheet, in common with all of the type III internal sequence homology structures obtained for fibronectin so far. The location of the domain in fibronectin was made possible by limited thermolysin digestion and identification of the fragments and by comparison of the sequence of the 14-kDa fragment with the partial structure of bovine plasma fibronectin. The domain comprises residues 585-675 and defines a region immediately adjacent to the collagen-binding domain. Numbering domains beginning at the amino terminus, this domain is Domain III after the fibrin/heparin/actin/S. aureus binding Domain I and the collagen-binding Domain II. The domain was obtained from a larger precursor (56 kDa) which bound heparin, DNA, and gelatin. Further digestion of the 56-kDa fragment gave rise to a 40-kDa fragment which only bound gelatin, and a 14-kDa fragment which only bound heparin or DNA. The 14-kDa fragment (Domain III) marks the beginning of the type III homology region in fibronectin, for there may be up to 15 repeats of 90 amino acids. The size of this domain corresponds to one repeat of 90 amino acids and it has some sequence homology to the other type III sequences found thus far in fibronectin.

Amino Acid Sequence↗

Primary structure of a glycosylated DNA-binding domain in human plasma fibronectin.

The complete amino acid sequence of a DNA-binding domain isolated from human plasma fibronectin after limited trypsin digestion has been obtained. It contains 132 amino acids and one biantennary glycosyl unit at residue 104, for an estimated Mr of 16,931. The fragment can be purified by a two-step procedure consisting of DNA-affinity chromatography and reverse-phase high performance liquid chromatography. It can also be purified by heparin-affinity chromatography. The domain is unusual in its susceptibility to tryptic-like cleavages even by neutral or aromatic residue-specific proteases. It has no cysteine residues and is predicted to favor a beta-sheet structure by Chou and Fasman analysis. Based on this analysis we have proposed a model which exhibits a clustering of aromatic and basic residues, consistent with similar involvement of basic and aromatic residues in other DNA-binding proteins. The net charge of the domain at neutral pH (+1, without sialic acid) argues against a nonspecific charge interaction with polyanionic macromolecules such as DNA and heparin. Internal sequence repeats occur at intervals of 30, 60, and 90 residues, thus suggesting a maximum size for a repetitive building block which gave rise to this domain.

Amino Acid Sequence↗

Human placental (fetal) fibronectin: increased glycosylation and higher protease resistance than plasma fibronectin. Presence of polylactosamine glycopeptides and properties of a 44-kilodalton chymotryptic collagen-binding domain: difference from human plasma fibronectin.

Human placental fibronectin was isolated from fresh term placenta by urea extraction and purified by gelatin affinity chromatography. A 44-kDa chymotryptic fragment, also purified by gelatin affinity chromatography, gave a broad, diffuse band on polyacrylamide gel electrophoresis, whereas the analogous 43-kDa fragment from human plasma fibronectin migrated as a defined, narrow band. Upon extended treatment with endo-beta-galactosidase from Escherichia freundii, the 44-kDa chymotryptic gelatin-binding fragment from placental fibronectin changed its behavior on gel electrophoresis and migrated as a narrower, more defined band. The carbohydrates on human placental fibronectin contained a large percentage of polylactosamine structures, part of which occurred on the gelatin-binding fragment, comprising almost twice as much carbohydrate as plasma fibronectin. NH2-terminal amino acid sequence analysis of the chymotryptic gelatin-binding fragments from both fibronectins showed the first 21 residues to be identical. Tryptic and chymotryptic peptide maps of the gelatin-binding fragment from placental fibronectin, however, showed differences including several protease-resistant domains not found in the analogous fragment from plasma fibronectin. Intact placental fibronectin contains 20,000 Da of carbohydrate, whereas plasma fibronectin contains 11,000 Da. Placental fibronectin is more protease-resistant than plasma fibronectin, possibly due to the additional carbohydrate. Polyclonal antibodies against either fibronectin completely cross-react with amniotic fluid fibronectin, placental fibronectin, and plasma fibronectin upon Ouchterlony immunodiffusion. Human fibronectins of putatively the same polypeptide structure are, therefore, glycosylated in a dramatically different fashion, depending on the tissue of expression. If the patterns of glycosylation comprise the only difference in the glycoprotein, this may confer the characteristic protease resistance found for each of the fibronectins.

Chymotrypsin↗

Generation of antibody activity from immunoglobulin polypeptide chains produced in Escherichia coli.

Plasmids have been constructed that direct the synthesis in Escherichia coli of heavy chains and/or light chains of an anti-carcinoembryonic antigen (CEA) antibody. Another plasmid was constructed for expression of a truncated form of heavy chain (Fd' fragment) in E. coli. Functional CEA-binding activity was obtained by in vitro reconstitution in E. coli extracts of heavy chain or Fd' fragment mixed with extracts containing light chain.

Amino Acid Sequence↗

Cloning and physical mapping of a gene fragment coding for a 64-kilodalton major late antigen of human cytomegalovirus.

We have isolated a clone containing a gene fragment coding for a 64-kilodalton glycoprotein that is the major late antigen of human cytomegalovirus (HCMV). Based upon the amino acid sequence of a tryptic peptide of this glycoprotein (HCMVgp64), two sets of mixed-sequence probes, one consisting of a mixture of 16 heptadecadeoxyribonucleotides and the other a mixture of 32 icosadeoxyribonucleotides, were synthesized. A subgenomic library of HCMV (Towne strain) DNA was constructed in plasmid pBR327 and transformants were screened with 32P-labeled aliquots of these synthetic oligodeoxyribonucleotide probes. Two clones among 15,000 gave strong positive signals. Plasmid DNA was isolated from the positive clones and characterized by restriction mapping and Southern blot analysis using both probes. The plasmid DNA contained a 2.3-kilobase insert, which yielded an 800-base-pair and a 1500-base-pair fragment after Sau3A digestion. Only the 800-base-pair fragment hybridized to the mixed probes, and DNA sequence analysis revealed that it contains nucleotide sequences compatible with amino acid sequences of tryptic peptides of HCMVgp64. Restriction mapping studies of HCMV DNA using this 32P-labeled 800-base-pair cloned DNA have allowed us to locate this gene fragment in the long unique region of HCMV (Towne strain) genome at approximately equal to 0.5-0.51 map unit.

Antigens, Viral↗

Autosomal dominant partial lipodystrophy associated with Rieger anomaly, short stature, and insulinopenic diabetes.

We describe the clinical findings and natural history of an autosomal dominant form of partial lipodystrophy found in four affected individuals from three generations in the same family. The lipodystrophy was present from infancy/early childhood, involved primarily the face and local areas on the buttocks, and was nonprogressive. Affected individuals also had the Rieger anomaly, midface hypoplasia, short stature, retarded bone age, and hypotrichosis. An affected woman developed insulinopenic diabetes mellitus at 39 yr and another had glucose intolerance at 55 yr.

Adult↗

Diagnosis of heterozygotes in Glanzmann's thrombasthenia.

A study of a family with a propositus suffering from classical thrombasthenia type I has shown that the new immunochemical methods detect heterozygotes with high reliability. There was no overlapping between heterozygotes and normals, and the concentration of the glycoproteins IIb-IIIa-complex is remarkable constant around 50-60% in the heterozygotes. Furthermore, heterozygotes as a group show an increased bleeding tendency.

Adult↗