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Biomedical subjects

A K Bandyopadhyay

Publications and source records attributed to A K Bandyopadhyay.

At least 19 recordsLinked to original sources

Pathogenicity of Artyfechinostomum oraoni in naturally infected pigs.

In an attempt to establish the diarrhoeogenic potential of the newly identified Artyfechinostomum oraoni, which was associated with human diarrhoea in a tribal community near Calcutta, India, two naturally infected domestic pigs of the locality were followed in captivity. Both pigs developed fatal diarrhoea after 5 months. The autopsy revealed a massive infection with the echinostome on a haemorrhagic and oedematous mucosa of the jejunum and duodenum extending up to pyloric end of the stomach. It is suggested that similar pathology might also be operating in the infected man.

Animals

Studies on the life cycle of Artyfechinostomum oraoni Bandyopadhyay, Manna & Nandy 1989: embryogenesis & development in the intermediate host.

A study was undertaken to elucidate the life cycle of the parasite A.oraoni, isolated from man. For the purpose, operculated eggs were isolated from faeces of oraon tribals belonging to the village Bandipore, district North 24-Parganas of West Bengal province of India. The purified eggs were incubated at different temperatures, salinity and pH. Larvae (miracidia) could be observed to develop between the 7th and 8th day of incubation at a temperature range between 22 degrees-30 degrees C. While the optimum pH was observed to be neutral, larval development did not take place at salinity beyond 0.8 per cent. To identify the correct intermediate host, all available species of snails from the study village were colonised and infected with the laboratory hatched miracidia from human derived operculated eggs. It was observed that of all the snails infected, only Lymnaea supported the development of rediae from miracidia, which could be observed on the 32nd post infection day. Considering the results of the experimental study, it was hypothesised that Lymnaea spp. of snails under natural condition also, might act as the first intermediate host for A. oraoni.

Animals

Effect of fatty acid binding proteins on developing human placental malate dehydrogenase activity.

Role of fatty acid binding proteins (FABPs) in modulating inhibition of human placental malate dehydrogenase by palmitoyl-CoA and oleate has been studied. Activity of human placental cytosolic malate dehydrogenase is detected throughout the gestation, showing a peak at midgestation (20-25 weeks). Inhibition (50%) of the enzyme activity is obtained by 20 microM palmitoyl-CoA or 35 microM oleate. FABPs enhance the activity of malate dehydrogenase in absence of palmitoyl-CoA or oleate and also protect against palmitoyl-CoA or oleate inhibition. Such a modulatory effect of FABP may be due to the binding of long chain fatty acyl-CoA or fatty acid rather than a direct effect of FABPs on the enzyme.

Carrier Proteins

Characterization of xenotropic and dual-tropic type C retroviruses isolated from Abelson tumour.

Tumours induced in Balb/c mice by Abelson virus complex were found to contain a xenotropic virus (A-X-MuLV) and an NB-tropic, dual-tropic virus (NBX), in addition to the Moloney leukaemia virus (M-MuLV) and the defective, transforming Abelson virus genome. Both A-X-MuLV and NBX virus were presumably present in a genomically masked form and could be recovered only by co-cultivation of tumour cells with permissive cells. Only about 0.87% and 0.13% of the viruses in the co-culture supernatant represented A-X-MuLV and NBX virus respectively; the majority were M-MuLV. The NBX virus acted more efficiently than the HIX virus (Fischinger et al., 1975) as helper to rescue murine sarcoma virus (MSV) from S+L-cells of hamster, rat and mouse origin, whereas the converse was true for those of cat and human origin. The interference and nuetralization patterns suggested that the NBX virus was an env gene recombinant between A-X-MuLV and M-MuLV. The fact that NBX virus cross-reacted in radioimmunoassays with gp70s of both M-MuLV and Balb: virus-2 provides evidence for the recombinant nature of the NBX gp 70-coding gene which was probably derived from both M-MuLV and a virus similar to Balb: virus-2 or A-X-MuLV. The presence of a unique antigenic determinant on the gp70 of NBX virus is also suggested. Both A-X-MuLV and NBX virus cross-reacted with type-specific p12s of M-MuLV and Balb: virus 2- suggesting that the gag gene coding for p12 of NBX virus was derived from the A-X-MuLV, which was itself a recombinant, its p12-coding gene being derived from both Balb: virus-2-like virus and M-MuLV. The NBX virus was not oncogenic when tested in newborn Balb/c mice.

Abelson murine leukemia virus

Ecotropic and xenotropic type C retroviruses associated with reticulum cell neoplasms of SJL/J mice.

An ecotropic type C retrovirus (D1-MuLV) isolated from SJL/J mice was injected into neonatally thymectomized SJL/J mice. There was no acceleration of development of reticulum cell neoplasm (RCN) in these mice as compared with the control, uninoculated but similarly thymectomized group. The incidence of RCN at 10 and 11 months after injection was 14.6% and 12.5% respectively. Two female mice inoculated with D1-MuLV developed mammary adenocarcinoma. There was persistence of high titres of the ecotropic virus associated with RCN and mammary tumour of SJL/J mice. Xenotropic virus (X-MuLV) was detected in spleens of normal SJL/J mice at ages 6 and 12 months (60% and 80% respectively) but not at other ages. The X-MuLV isolated from SJL/J mouse embryo cell cultures treated with 5-iodo-2'-deoxyuridine (SJL-MEF-X-MuLV) and that isolated from a spontaneous RCN (SJL-RCN-X-MuLV) were compared with NZB-X-MuLV (NZB mouse origin) and AT124-X-MuLV (NIH Swiss mouse origin) in regard to their host range, ion and primer-template preference by reverse transcriptase, virus interference and neutralization characteristics. Cross-neutralization and gp70 competitive radio-immunoassays showed that D1-MuLV is more closely related to AKR-MuLV than to Rauscher-MuLV and appears to share some virus envelope antigens with SJL-X-MuLVs. The type-specific gag gene product (p12) from Balb:virus-2 and NZB-X-MuLV was used in competitive radioimmunoassay, and SJL-RCN-X-MuLV was found to be more closely related to Balb:virus-2 (MuLV-X alpha) than to NZB-X-MuLV (MuLV-X beta).

Animals

Complexing reverse transcriptase with polyspermine-ribonuclease.

Polyspermine-ribonuclease (Mr approximately 17 000) and the enzyme transcriptase from Rauscher-leukaemia virus (Mr approximately 70 000) form a complex Mr approx. 160 000) such that the molar ratio of polyspermine-ribonuclease to reverse transcriptase is 5:1. The most favourable condition for complex-formation is in a solution consisting of 0.01 M-Tris/HCl buffer, pH 7.5, 0.25 M-KCl and 1 mM-Mn2+ at 37 degrees C. The association of the two enzymes retains full RNAase activity, but reverse-transcriptase activity is completely inhibited when ribonuclease-sensitive polymers such as (dG)12 x (rC)n or viral 70S RNA are used as primer templates.

Molecular Weight

Effect of RNA tumor virus-specific protein p30 on reverse transcriptase. Intraspecies and interspecies interaction between reverse transcriptase and p30.

Reverse transcriptase and p30 were purified from various retroviruses and the intra- and interspecific interaction between the two proteins were studied. The intraspecific complex stimulates [3H]TMP incorporation into (dT)12.(rA)n severalfold above that of the enzyme itself whereas DNA synthesis in the presence of the interspecific complex can stimulate DNA synthesis about 1.5-fold. The sedimentation rate value of the intraspecies complex varies between 12 and 16 S with an estimated molecular weight of 400,000. The molar ratio of p30:reverse transcriptase within the complex is 8:1. Both complexes can be dissociated into their original protein components by exposure to salt (kcl) solution, except that 0.3 M KCl will dissociate the interspecies complex whereas 0.8 M KCl is required for dissociation of the intraspecies complex. Competition studies in which an interspecies complex was exposed to p30 autologous to reverse transcriptase within the complex resulted in the displacement of the heterologous (p30) protein and the formation of a new intraspecific complex.

Molecular Weight

Complexing Rauscher leukemia virus reverse transcriptase with human plasma ribonuclease from Hodgkin's disease patients.

Human ribonucleases were purified from the sera of Hodgkin's disease patients by sequential column chromatography. The purified enzyme interacted with reverse transcriptase of Rauscher leukemia virus and formed an additive complex of Mr = 130,000. RNase and oligo(dG)-directed reverse transcriptase activities were diminished in the complex. The complex could be dissociated with the subsequent restoration of both activities in the presence of spermidine. The molecular weight of the complex suggest that the 2 RNase molecules bind to a single reverse transcriptase molecule.

Hodgkin Disease

Effect of Rauscher leukemia virus-specific proteins on reverse transcriptase. Binding between reverse transcriptase and p30.

The reverse transcriptase was purified to homogeneity from Rauscher leukemia virus by sequential column chromatography on phosphocellulose and DNA-cellulose. The purified enzyme, a single polypeptide chain with a molecular weight of approximately 70,000, interacts with major internal protein p30 of the same virus. The reverse transcriptase - p30 complex stimulated [3H]TMP incorporation into (dT)12 - (rA)n 2- to 3-fold compared to that observed with the purified enzyme alone. Monospecific antiserum made against either p30 or reverse transcriptase precipitated the entire complex. The sedimentation rate of the reverse transcriptase - p30 complex is approximately 12 S as estimated by glycerol gradient centrifugation, and the molecular weight is approximately 400,000 by chromatography on a Sepharose 6B column. The complex dissociates into its original components when treated with 0.8 M KCl.

Immunoassay

Partial purification and characterization of DNA polymerases from a Rous sarcoma virus-transformed rat cell line.

A new DNA polymerase was partially purified from cell-free extracts of a continuous rat cell-line (XC). The XC cells had been transformed by the Prague strain of Rous sarcoma virus but did not produce infectious virus. The molecular weight of the DNA polymerase is 70,000, as estimated by glycerol gradient centrifugation and by Sephadex gel filtration. This enzyme can be distinguished from the other cellular DNA polymerases by its elution pattern on DNA-cellulose column chromatography, its molecular weight, and its primer-template specificity. The enzyme has some characteristics of the murine leukemia virus reverse transcriptase. It is partially inhibited by immunoglobulin G purified from rabbit antiserum prepared against Rauscher leukemia virus reverse transcriptase, but is not inhibited by IgG from rat antiserum prepared against avian myeloblastosis virus reverse transcriptase. However, the XC cell enzyme can be distinguished from the murine leukemia virus reverse transcriptase by its inefficiency in copying an oligo(dG)12-poly(rC)primer-template.

Avian Sarcoma Viruses