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Biomedical subjects

Y D Sharma

Publications and source records attributed to Y D Sharma.

47 records · Page 3Linked to original sources

Histidine-rich domain of the knob protein of the human malaria parasite Plasmodium falciparum.

Membranes of erythrocytes infected with the human malaria parasite Plasmodium falciparum develop protrusions called knobs. These structures are essential for the survival of the parasite in the host, and their induction requires the synthesis of the knob protein by the parasite. We describe the isolation of a cDNA clone encoding the amino-terminal half of the knob protein. A cDNA library was constructed from RNA prepared from ring stages of a P. falciparum isolate that has retained its ability to induce knobs (knob+ phenotype). A synthetic oligonucleotide probe encoding polyhistidine was used to isolate the cDNA clone, which encodes the amino-terminal half of a polypeptide with all the known attributes of the knob protein. The gene is not transcribed in variants that do not synthesize the knob protein and thereby cannot induce knobs (knob- phenotype). The apparent lack of transcription in knob- variants is due to different mechanisms: although the gene is present in one knob- isolate, it has been deleted in a cloned knob- variant. The primary structure of the polypeptide deduced from a partial sequence of the cDNA is distinctly different from other malarial histidine-rich polypeptides. The amino-terminal sequence shows the characteristic features of a signal peptide. This is followed by a histidine-rich domain and a subsequent region which contains one histidine. Peptide map analysis of the knob protein is consistent with the structural features deduced from the sequence analysis of the cDNA.

Amino Acid Sequence↗

High-performance liquid chromatographic separation of glycopeptides from Nereis cuticle collagen.

To facilitate the structural studies of invertebrate collagens, a sensitive and effective method was developed, using reverse-phase high-performance liquid chromatography for preparative isolation of the collagen subunits and their clostridial collagenase-derived peptides; the methods have been applied to Nereis cuticle collagen. The two subunits of denatured Nereis cuticle collagen, termed A and B, were initially separated by high-performance liquid chromatography. These polypeptides, with Mr of about 0.5 million, were each exhaustively digested with clostridial collagenase. The digest of the A subunit, which contains all of the uronic acid, was enriched for the uronic acid-containing glycopeptides by means of gel filtration. These glycopeptides were resolved into 23 major peaks, using reverse-phase HPLC, over a 5-h elution time, with an acetonitrile gradient (0-20%) containing 0.1% TFA. The amino acid composition data suggests that the peptides are of variable length, from 5 to 17 residues, while beta-elimination studies show that the uronic acid-containing moieties are all O-glycosidically linked to threonine residues, in the peptides examined. The amino acid sequence of one of the major glycopeptides was determined and found to be Gly-Hyp-Ala-Gly-Gly-Ile-Gly-Glu-Thr-Gly-Ala-Val-Gly-Leu-Hyp. The amino acid compositions of glycosylated and nonglycosylated peptides which had eluted, numbering about 100, showed a correspondence between hydrophobicity or hydrophilicity and emergence time from the column. We also found that the peptides most enriched in 4-hydroxyproline emerged earliest. These studies provide a foundation for elucidating the detailed structures of the large, unusual subunits of a well-characterized cuticle collagen.

Amino Acid Sequence↗

Serum sialic acid and ceruloplasmin levels in experimental fluorosis.

The present study describes the effect of fluoride (10 mg NaF/kg body weight/day) on the total protein-bound sialic acid and ceruloplasmin levels in rabbit serum after receiving sodium fluoride intragastrically for 3, 5, 8 and 10 months. The total protein-bound sialic acid and ceruloplasmin levels in serum were reduced, whereas the fluoride levels were increased showing a cumulative effect. It is suggested that the decreased circulatory sialic acid and ceruloplasmin levels with increased serum fluoride may be used in an early detection of fluorosis.

Animals↗

Variations in the metabolism and maturation of collagen after fluoride ingestion.

This study describes the effect of fluoride ingestion (10 mg NaF/kg body weight per day) for up to 180 days, on the biosynthesis, maturation and degradation of rabbit skin collagen. Higher intake of fluoride interferes with the collagen biosynthesis resulting in a reduction in the collagen content (in terms of hydroxyproline). Fluoride administration increases the solubility of collagen by reducing the amounts of cross-link precursors, thus impairing the cross-linking and maturation of tissue collagen fibers. Collagen degradation by the collagen-bound collagenase is increased due to the accumulation of higher pools of soluble collagen.

Animals↗

Effect of sodium fluoride on collagen cross-link precursors.

Rabbits of similar age and body weight received sodium fluoride (NaF) (50 mg/kg body weight/day) intragastrically for up to 136 days. The acid-soluble collagen of bone, tendon, trachea and skin was extracted and purified. Aldehyde associated with the collagen was determined spectrophotometrically. Bone collagen, which had maximum aldehyde content in normal conditions, showed maximum reduction after sodium fluoride ingestion, as compared to other tissues. The mode of action of fluoride appears variable from tissue to tissue. The collagen fibres produced during fluoride toxicity would be defective due to inadequate cross-links. Thus sodium fluoride interferes with the maturation and normal metabolism of tissue collagen.

Aldehydes↗

Chemical profile of blood in fluoride toxicity. III. Plasma fibrinogen levels in rabbit.

Rabbits in two groups were given different doses of sodium fluoride i.e. low dose (10 mg NaF/kg body weight) and high dose (50 mg NaF/kg body weight). Blood was drawn from both groups on certain specific days after fluoride administration. The two different doses of sodium fluoride gave different response with regards to the fibrinogen levels in blood plasma. It is suggested that administration of low doses of sodium fluoride, induce new bone formation enhancing fibrinogen levels. But in high doses of sodium fluoride, moderate tissue damage results in high levels of plasma fibrinogen.

Animals↗

Malaria genome project and its impact on the disease.

Malaria remains uncontrolled to-date due to lack of effective parasite and vector control strategies. With the completion of the host, parasite and vector genome projects more suitable and effective disease control measures can be achieved. Here we have reviewed the Plasmodium falciparum genome project and its impact on malaria research in future. The parasite genome project has revealed certain metabolic pathways which can be targeted to develop antimalarial drugs. It has also identified large number of potential antigens for the future potential vaccines. Now the researchers in the malaria field can plan to take up the studies, which can yield more fruitful results within the limited financial resources using bioinformatics, proteomics, structural, functional and comparative genomics, etc.

Animals↗