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Biomedical subjects

L A Lokshina

Publications and source records attributed to L A Lokshina.

At least 19 recordsLinked to original sources

Proteolytic enzymes in human leukemic lymphoid cells. III. Aminopeptidases, angiotensin-converting enzyme, and its inhibitor in cells of different immunological phenotype.

Activities of plasma membrane proteinases such as angiotensin-converting enzyme (ACE), aminopeptidases, and dipeptidyl peptidase IV (DPP-IV) were determined in lymphoid cells of various immunological phenotype which were obtained from 30 patients with lymphoproliferative diseases. The enzyme activities significantly varied depending on the immunological phenotype and stage of cell differentiation, but no correlation was found between activities of ACE, DPP-IV, and aminopeptidases in the cells of different type. The cell lysates studied contained at least two classes of aminopeptidases: metal- and sulfhydryl-dependent enzymes. A sulfhydryl-dependent aminopeptidase with activity optimum at pH 8. 5-9.0 was found for the first time and is suggested to be from a poorly studied aminopeptidase family. In addition to ACE, lysates of leukemic T- and B-cells were found to contain an inhibitor of ACE which was not previously described for these cells.

Aminopeptidases↗

[Plasma membrane proteinases from lymphoid cells and their biological functions].

The properties, distribution, and biological functions of several proteases from the plasma membrane of lymphoid cells are reviewed: dipeptidyl peptidase IV, neutral endopeptidase, aminopeptidases A and N, and a new protease of the family of adamalysins. these enzymes (designated as ectopeptidases) are integral membrane proteins whose molecules are mainly located extracellularly. Their functions involve proteolysis on the cell surface: the formation and inactivation of regulatory peptides and growth factors, as well as modification of cell surface proteins. The biological significance of a partial proteolysis of the plasma membrane proteins and the resulting soluble isoforms are discussed. An analysis of the data suggests that ectopeptidases from lymphoid cells are elements of the sensory system of the cell and are involved in the regulation of its physiological response to external factors and in the coordination of cell-cell interactions.

Aminopeptidases↗

[Proteolytic enzymes and their biological function].

The paper reviews studies made by the Laboratory of Biochemistry and Chemical Pathology of Proteins, Institute of Biomedical Chemistry, Russian Academy of Medical Sciences, into the properties, structure, active center, biological functions, activity regulation. It accesses them in forming current concepts of the regulatory role of proteolytic enzymes. Their proteolytic features as a regulatory mechanism and various aspects of the regulatory role of proteinases are considered in the paper.

Animals↗

[Proteolytic enzymes in the regulation of biological processes].

The role of proteolytic enzymes in protein processing, receptor-mediated processes and intercellular interactions is reviewed. Limited proteolysis is suggested to be a mechanism through which the information stored in polypeptide chains and necessary for realization of particular biological functions could be most fully expressed.

Cell Communication↗

[Proteolytic enzymes in human lymphocytic leukemia cells. I. Activity of dipeptidylaminopeptidase IV, plasminogen activator and cathepsins B and L in cells with different immunologic phenotype].

Immunological and biochemical study of lymphoid cells obtained from 20 patients with various forms of lymphoproliferative disorders has been carried out. It was found that different phenotypes of lymphoid cells at various stages of differentiation have different activity levels of dipeptidyl aminopeptidase IV (DAP IV), plasminogen activator (urokinase type) and cathepsins B + L. The highest proteinase activity values were found in the lysates of just those leukemic T-cells whose phenotypes corresponded to the initial stages of thymic differentiation or to activated T-cells. The 10 times lowered activity was found in the cell phenotypes of mature T-helpers and T-suppressors, and the activity of the both was at virtually the same level. In lymphoid cells of the B-lineage (from pre-B to mature B-lymphocytes) the proteinase activities did not differ essentially: they were 2 to 3 times lower than in the lymphoid progenitors. It was suggested that the regulated activity changes in some proteinases occur during differentiation along the T- or B-pathways. It is likely that the increases in DAP IV and cathepsins B + L activities are associated with the activation of mature lymphoid T- and B-cells. No direct correlation was found between the activity of either proteinase and the expression of any of the surface markers under study.

B-Lymphocytes↗

[Proteolytic enzymes in human lymphocytic leukemia cells. II. Comparative characteristics of proteolytic enzymes and their inhibitors in three differing types of lymphoid cells].

A comparative study of proteolytic enzymes and their inhibitors in three human leukemic lymphoid cell populations has been carried out. The lysates of all lymphoid cells contained cathepsins D, B, L and H as well as serine trypsin-like proteinases, several aminopeptidases, dipeptidyl aminopeptidase IV and plasminogen activator (urokinase type). The activities of individual proteinases and their ratios in all cell types under study varied essentially, suggesting that lymphoid cells with different functions have different sets of proteolytic enzymes. FPLC chromatography of the lysates revealed the presence of inhibitors of cysteine and serine trypsin-like proteinases. The procedure for isolation of cathepsins D, B, L and H and of their inhibitors has been proposed and partially purified protein preparations obtained. Some properties of cathepsins B and L and those of their inhibitor have been examined.

Amino Acid Sequence↗

Dipeptidylpeptidase IV in human leukemic B- and T-cells.

Dipeptidylpeptidase IV (DPP-IV) activity in lymphoid cells of patients with various lymphoproliferative diseases has been assayed. The enzyme activity was detected in lysates of all leukemic T- and B-cells studied. High DPP-IV activity levels (5-7 fold higher than those in mature Th and Ts) were found in T-cells with phenotypes corresponding either to the early thymic stages of maturation, or to activated T-lymphocytes, or to some atypic T-cells. In most leukemic B-cells with phenotypes of mature and late B-lymphocytes, the DPP-IV activity was lower than in mature T-cells; however, in some B-cells carrying the activation markers CD 25 and CD 30 the activity was rather high. High DPP-IV activity was seen in the majority of leukemic B-cells expressing CD 25 (87%) and CD 11c (82%) antigens. Experiments with intact cells have shown that DPP-IV is present in the plasma membrane of leukemic B- and T-cells studied. Thus DPP-IV cannot be considered as a marker of activated T-cells alone because a significant DPP-IV activity was also detected in a number of activated leukemic B-cells and in early T-cells.

Antigens, Differentiation↗

Activity of some proteinases and glycosidases in human leukemic lymphoid cells at various stages of differentiation.

Activities of some glycosidases and proteinases in human leukemic lymphoid cells at various stages of differentiation have been compared. It was found that cells with different immunological phenotypes gave different enzymic spectra. Glycosidases and proteinases in lymphoid cell precursors had higher activity level than the enzymes in mature T- and B- cells. In cells of B- lineage, all activities were lower than in common precursor of lymphoid cells. In T-cells at the earlier stages of thymic differentiation, activities of all proteinases and most of glycosidases were higher than in common precursor cells whereas in mature T-helpers and T-suppressors the activities were markedly lower. Most of hydrolases in mature T-cells were twice more active than the enzymes in mature B-cells. The opposite-directional changes in activities of some hydrolases at the earlier stages of differentiation of lymphoid cells along B- or T- cells pathways are suggested.

Antigens, Differentiation↗

[Double contrasting in the ultrasonic study of the area of the suture on the uterus following cesarean section].

Ultrasonic examination of the suture site on the uterus was carried out in 7-10 days following a cesarean section in 73 women. Several types of characteristic echograms were distinguished, evidencing the adequacy of the reparative processes at the site of suture on the uterus. The authors find the double-contrast echoscopic examination of the postoperative uterus highly effective, and much more informative than common ultrasonic examination. Synthetic suture material is recommended.

Caprolactam↗

[Dipeptidyl aminopeptidase-IV in lymphocytes of patients with lymphoproliferative diseases].

DAP-IV activity (Gly-Pro-MCA hydrolysis, pH 7.8) was found in lysates of peripheral blood lymphocytes of patients with T- and B-cell forms of malignant lymphoproliferative diseases. The highest DAP-IV activity was seen in the cells of patients with a rare variant of T-cell lymphocytic leukemia (T-CLL); these cells expressed simultaneously the antigens of T helpers and T suppressors (Th and Ts) (OKT4+ and OKT8+). The DAP-IV activity about ten times less was found in the pathological cells with a phenotype of mature Th (Sezary disease), as well as in the cells expressing antigens of both Ts and natural killers (a rare variant of T-CLL). The same activity was also found in Ts (T gamma-lymphocytosis). The data obtained show that the differences in DAP-IV expression are connected with the differentiation step rather than with the belonging to a particular subpopulation of T-cells. DAP-IV activity, which was somewhat lower than that of T-cells, was found in B-lymphocytes of patients with B-CLL, hair-cellular leukemia, and non-Hodgkin's lymphoma. No correlation of DAP-IV activity with the level of E-cellular differentiation was observed.

Antigens↗

[Inactivation of blood plasma alpha 1-proteinase inhibitor as affected by 2 splenic thiol proteinases active in a neutral medium].

It has been found that two active in neutral medium thiol proteinases from bovine spleen, cathepsin L and cathepsin H, bring about rapid and irreversible inactivation of alpha 1-proteinase inhibitor (alpha 1PI)--one of the major plasma inhibitors of serine proteinases. The activity of the enzymes studied did not change upon the interaction with alpha 1PI. With stoichiometric proteinase/inhibitor ratio, the inactivation of alpha 1PI under the effect of cathepsin L was instantaneous, while under the effect of cathepsin H it occurred within 30-60 min. The products of alpha 1PI inactivation had an inhibitory effect on the rate of its reaction with cathepsin L. alpha 1PI inactivation under the action of cathepsin L and cathepsin H was accompanied by the decrease in the molecular mass of the inhibitor from 54 kDA to 46 kDa. This was, probably, caused by the hydrolysis of the peptide bond formed by NH2 group of threonine. The 46 kDa fragment did not undergo further degradation. It did not bind to immobilized trypsin but retained antigenic properties. The results obtained show that the limited proteolysis is a mechanism of the inhibitor inactivation. It is suggested that under some conditions thiol proteinases, upon their release from the cell, participate in the control of effective alpha 1PI concentration.

Animals↗

[Comparative study of the proteolytic products of fibronectins in the serum of adult and embryonic animals formed under the effects of proteinases of the spleen].

The effects of two spleen proteinases, cathepsin D and thiol proteinase I active in neutral media--on the structural properties of fibronectins from blood plasma on adult animals and their embryos were investigated. Proteinase I and cathepsin D caused rapid fragmentation of all fibronectins under study. Fibronectin from calf embryonic serum was more sensitive to proteinase I than that from adult animal serum. The molecular weight and the correlation between the proteolytic products formed under the influence of each enzyme, on the embryonic and "adult" fibronectins, are very similar but not identical. Similar results were obtained in experiments with proteolytic products of chicken serum and embryo fibronectins. Fragmentation of embryonic fibronectin occurs more rapidly than that of chicken fibronectin; the fibronectin proteolytic products differ both qualitatively and quantitatively. However, the determination of structural differences between these fibronectins is considerably hampered by the presence of protein contaminations in chicken fibronectin preparations.

Animals↗

[Action of two thiol proteinases from the spleen which are active in neutral media on vasoactive peptides].

The action of two earlier isolated highly purified spleen thiol proteinases on angiotensins I and II, bradykinin and kallidin was investigated. It was demonstrated that proteinase I which is apparently cathepsin L from bovine spleen brings about rapid inactivation of angiotensin II with a splitting of the Tyr-Ile bond and a formation of two tetrapeptides. Proteinases I also split angiotensin I. Proteinase I partially inactivates bradykinin and kallidin by splitting the Gly4-Phe5 bond. The activity of proteinase I toward angiotensin II is about 50 times higher than that toward bradykinin. The corresponding values of Km and V are 7.5 X 10(-5) M and 10.0 mumole/min/mg. The possible role of proteinase I in angiotensin II inactivation under physiological conditions is discussed. Proteinase II converts kallidin to bradykinin by splitting off the N-terminal lysine. Proteinase II causes partial inactivation of bradykinin by splitting of the Gly4-Phe5 and Phe5-Ser6 bonds of this peptide. Proteinase II possesses both aminopeptidase and endopeptidase activities and is therefore cathepsin H from spleen. Proteinase II does not split either angiotensin I or angiotensin II.

Amino Acid Sequence↗

[Immunochemical study of bovine spleen thiol proteinases: cathepsinS B, H and L].

Rabbit antisera were prepared against three highly purified enzymes from bovine spleen: proteinase I (cathepsin L), proteinase II (cathepsin H), and cathepsin B. The Ouchterlony double diffusion test shows that each antiserum specifically reacts with the corresponding antigen and does not cross react with other proteinases. These data provide evidence that the three proteinases are distinct with respect to their antigenic properties. Using specific antisera, the identity of two preparations of proteinase I isolated by different methods was demonstrated. Analysis of the fractions obtained in the course of isolation procedure revealed a component reacting with antisera against proteinase I. It had a greater molecular mass than proteinase I (30 000-40 000), was richer in antigenic respect and had a lower proteolytic activity as compared with proteinase I. The effect of various inhibitors and denaturation conditions on antigenic properties of proteinases was also studied.

Animals↗

[Characteristics of two thiol proteinases from spleen active in neutral media].

Two SH-dependent proteinases (I and II) active in neutral media were isolated from bovine spleen and purified to apparent homogeneity. The histone-hydrolyzing activity of proteinase I was increased 3500-fold as compared to that of the original extract. Proteinase I hydrolyzed a variety of proteins (histones, azocasein, hemoglobin, collagen) but did not hydrolyze low molecular weight synthetic substrates, such as BAPA, BANA, BAEE, ATEE, Leu-beta-NA, Arg-beta-Na and Ala-beta-NA. The molecular weight of the enzyme as determined by SDS electrophoresis was found to be about 23,000. Isoelectrofocusing of the enzyme resulted in one major component with pI of 6.05 and in two minor components with pI of 6.2 and 6.4. Proteinase II hydrolyzed Leu-beta-NA, Arg-beta-NA and Ala-beta-NA but did not hydrolyze beta-naphthylamides of dicarboxylic acids and Gly-Phe-beta-Na. This proteinase split BANA and histone and very slowly split azocasein and collagen. Proteinase II was found to have a molecular weight of 30 000 and a pI of 6.8-6.9. Proteinase I inactivated fructose-1.6-diphosphate aldolase, partly inactivated glucose-6-phosphatase dehydrogenase and caused activation of phosphodiesterase of cyclic nucleotides. Proteinase II had no effect on the activity of the above enzymes. A comparison of proteinase I and II with enzymes described in literature demonstrated that the former was cathepsin L, while the latter was cathepsin H from spleen.

Animals↗

[Isolation and properties of neutral SH-dependent proteinase from bovine spleen].

A neutral SH-dependent proteinase was isolated from bovine spleen by a slight modification of the previous method (1) and its action on some natural and synthetic substrates was studied. The activity of the enzyme was increased 2000--2500-fold as compared to that of the original extract. The enzyme hydrolyzed various histones (H1, H2a, H2b, H3), casein and protamine but did not split hemoglobin, serum albumin and 14C-tryptophane-labelled total protein from chicken embryos. The enzyme possessed neither collagenolytic nor elastase activity; it did not inactivate aldolase, hexokinase, glyceraldehyde phosphate dehydrogenase and glucose-6-phosphate dehydrogenase, which makes the enzyme different from cathepsin B1 and some other previously described proteinases. The enzyme did not split BAPA, BAEE, ATEE, Boc-Ala-ONP, Leu-beta-NA and some other peptides. The molecular weight of the enzyme was found to be about 15 000.

Animals↗