PubMed HealthSearch

Biomedical subjects

V Ninjoor

Publications and source records attributed to V Ninjoor.

At least 19 recordsLinked to original sources

Aminopeptidase from the skeletal muscle of fresh water fish Tilapia mossambica.

An aminopeptidase from the skeletal muscle of fish, Tilapia mossambica, was partially purified to 96-fold using salt precipitation, ion-exchange chromatography and molecular sieve chromatography. The enzyme showed optimum activity between pH 6.5-7.5 at 43 degrees C and Vmax and Km of 14.36 units/mg and 0.059 mM respectively with alanine beta-naphthylamide as the substrate. The aminopeptidase having a molecular weight of 305 kDa was activated by sulphydryl compounds and Co2+ and inhibited by bestatin, puromycin and metal chelators. Inhibition caused by metal chelators could be reversed by the addition of Co2+. Inclusion of L-amino acids, particularly isoleucine and leucine, in the assay medium caused inhibition of the enzyme activity. Substrate specificity together with inhibition and activation pattern indicated that the enzyme is alanine aminopeptidase.

Aminopeptidases

Intracellular hydrolases of Aspergillus parasiticus and Aspergillus flavus.

When the distribution profile of hydrolases in mycelial homogenates and culture filtrates of A. parasiticus and A. flavus was examined, six hydrolytic enzymes viz. N-acetyl-beta-glucosaminidase, aryl sulfatase, alkaline proteinase, cathepsin B, cathepsin D and aminopeptidase were detected in homogenate. The culture filtrates were devoid of any activity of these enzymes. The enzyme levels varied with the stage of incubation. The most abundant fungal exopeptidase showing preference for basic amino acid naphthylamides seems to be an aminopeptidase B. Incorporation of CEPA, an ethylene generating compound, stimulated the amino peptidase activity in the mycelium but inhibited the enzyme in vitro. The enzyme was also inhibited by different aflatoxins to varying degree. While aminopeptidase B was located intracellularly, a non-dialysable, heat-stable inhibitor of the enzyme was found to be secreted in the culture filtrate. This peptide inhibitor was however ineffective on the other enzymes.

Aspergillus

Evidence for the occurrence of an alkaline proteinase in kidney cortex lysosomes.

A novel alkaline endoproteinase optimally active at pH 8.5 has been detected in highly pure preparations of buffalo kidney cortex lysosomes. The enzyme has been partially purified (90-fold) by solubilization with octylglucoside, acid precipitation and chromatography over DEAE sephacel and sepharose 6B. The alkaline proteinase, resistant to known inhibitors of lysosomal cathepsins is inhibited by soyabean trypsin inhibitor and phenyl methyl sulphonyl fluoride indicating that the enzyme is a serine proteinase.

Animals

Isolation and characterization of cathepsin B from rabbit testis.

Cathepsin B (EC 3.4.22.1) has been purified from rabbit testes to apparent homogeneity by chromatography on DE-52, affinity chromatography on organomercurial agarose and subsequent gel filtrations on Sephadex G-75. The enzyme is composed of a single polypeptide of Mr 23,000. Thiol blocking agents and leupeptin abolished the activity of the enzyme completely. The enzyme showed maximum activity at pH 6.0 and 43 degrees C, required 2 mM-cysteine for the optimal activity and had a Km1.45 X 10(-3) M using Z-Arg-beta-naphthylamide as the substrate. However, Z-Arg-Arg-beta-naphthylamide was 12 times more sensitive as a substrate than was Z-Arg-beta-naphthylamide. Rabbit testicular cathepsin B hydrolysed intact proteins. An endogenous inhibitor isolated from the rabbit testes inhibited purified Cathepsin B.

Animals

Influence of starvation on the intra-lysosomal proteolysis in rat liver.

Starvation induced changes in the intralysosomal proteolysis in rat liver were assessed in terms of the degradation of intravenously administered [131I]-human serum albumin 30 min after injection. Fasting for five days resulted in nearly 11% increase in the endocytic uptake of the labeled protein in lysosome rich fraction. However, the rate of degradation of internalized protein measured in terms of TCA soluble products showed a distinct decline in starved animals as compared to fed controls. The observed decrease in proteolysis was reversed completely by refeeding the starved rats for 10 days. The restoration of the degradation profiles in fasted animals was also accomplished by isolating lysosomes at a post injection period of 90 min. The results indicated that the starvation induced decrease in proteolysis was a consequence of delayed fusion of lysosomes and the phagosome containing the labeled protein.

Animals

Response of heterogenous rat liver lysosome populations to starvation and refeeding.

Starvation-induced alterations in liver lysosomes and their recovery pattern following refeeding were investigated. Fasting of adult rats for five days caused an increase in 'free' activities of acid hydrolyses in liver homogenates and loss in sedimentation of one of the heterogenous populations of lysosomes that could be isolated by differential centrifugation. Isopycnic sucrose gradient centrifugation revealed a decrease in the median and modal equilibration densities of all the forms of lysosomes in response to the dietary deprivation. Further, starvation also evoked a distinct bimodal distribution in a population that was rich in acid phosphatases, beta-galactosidase and N-acetyl-beta-glucosaminidase. Realimentation of starved animals for 10 days was found to restore the enzyme levels and the sedimentation characteristics to normal profiles.

Acetylglucosaminidase