Biomedical subjects
M G Deo
Publications and source records attributed to M G Deo.
Detection and cloning of potent transforming gene(s) from chewing tobacco-related human oral carcinomas.
High molecular weight DNA isolated from 14 primary tumour tissues of human oral carcinoma patients was analysed for transforming activity by NIH3T3 co-transfection assay using pSV2neo gene as a selectable marker, followed by nude mouse tumorigenicity assay. Ten of the patient tumour tissues demonstrated molecular lesions in myc, ras or/and EGF-R genes, whereas 4 patients did not show tumour associated aberrations in these oncogenes. The G418-resistant transfected cells from 12 of 14 individual patients demonstrated transforming potential by colony formation in soft agar and tumour induction in nude mice within 25-80 days. DNAs from the transfected cells, consequent nude mice tumours and corresponding cell lines, contained human Alu sequences. Southern blot hybridisation with ras, myc, EGF-R oncogenes demonstrated the presence of human H-ras oncogene in one of the 12 sets of nude mice tumours. In contrast, DNA from the other 11 sets of nude mice tumours indicated absence of c-myc, N-myc, L-myc, H-ras, K-ras, N-ras and EGF-R genes on Southern analysis. Further, DNAs from five first cycle tumorigenic transformants were subjected to a second cycle of transfection, and induced tumours in nude mice with a shorter latency period of 21-50 days. The secondary transformants contained discrete human Alu sequences; however, the DNA did not hybridise with myc/ras/EGF-R probes. A genomic library was constructed from a second cycle nude mice tumour, using EMBL-3 as the vector. Four human Alu sequence positive clones were isolated on screening 2 x 10(5) plaques, and one of the recombinant clones subjected to fine restriction mapping using 16 restriction enzymes. The lack of association of the nude mice tumour DNA with myc/ras/EGF-R showing aberrations in the primary human tumour, implies activation of an alternative potent transforming gene(s) in the chewing tobacco-related oral carcinomas in India.
Immunoprecipitation of mycobacterial antigens with sera from patients with leprosy.
Pooled sera from leprosy patients across the clinical spectrum, tuberculosis patients and healthy individuals were tested for their reactivity with antigens of Mycobacterium leprae and a panel of cultivable mycobacteria by immunoprecipitation technique. Sera from lepromatous leprosy patients demonstrated exclusive reactivity with the 26-kDa protein of M. tuberculosis H37Ra, 28-kDa protein of M. kansasii, 45-kDa protein of M. smegmatis, and 158, 40 and 14 kDa proteins of M. phlei. Sera from patients with borderline tuberculoid leprosy, tuberculoid leprosy, tuberculosis and health individuals failed to identify these antigens. Our studies indicate that analysis and characterization of immunodominant antigenic epitopes present on proteins of cultivable mycobacteria, sharing cross-reactive epitopes with M. leprae may prove to be important in the serodiagnosis of multibacillary leprosy as well as for developing vaccines for immunotherapy of leprosy.
Restriction fragment length polymorphisms of the human N-myc gene in normal healthy individuals and oral cancer patients in India.
Southern blot hybridization with N-myc oncogene probes coding for different regions of the N-myc gene demonstrated three polymorphic restriction sites in the Indian population. The SphI and PvuII polymorphic pattern due to the SphI polymorphic site in the second intron and the PvuII polymorphic site in the 3'-region of the human N-myc oncogene respectively, was similar to that reported in the Japanese population. The allelic frequency distribution for SphI polymorphism did not differ significantly for the S1 and S2 alleles representing presence (allele S1) or absence (allele S2) of a SphI site. However, the allelic frequency distribution was distorted in the case of PvuII polymorphism, as the frequency of P1 allele (0.7) indicating presence of PvuII site, was higher than the P2 allele (0.3) indicating absence of PvuII site, in the Indian population. An additional polymorphic HindIII site localised in the second intron of the N-myc gene was also observed in both the Indian oral cancer patients and the normal healthy individuals, indicating that this RFLP was not tumor associated and may perhaps represent N-myc alteration in the Indian population.
Molecular lesions in human oral cancer: the Indian scene.
Carcinogenesis is a multi-step process including aberrant expression of two interacting classes of genes--oncogenes and tumour suppressor genes. With recent technological advances, it is feasible to identify the various molecular lesions underlying the different stages of neoplasia. Squamous cell carcinomas of the head and neck, although representing 2-4% of the malignancies in the West, comprise a large fraction (40%) of total cancers in India, posing a major health problem. Further, epidemiological and experimental evidence unequivocally confirms a causal association between tobacco chewing habit, highly prevalent in India, and oral cancers. Thus, the oral cancers offer an excellent in vivo system for the study of the environmental tobacco-carcinogen induced molecular alterations in the malignancy, and associated premalignant lesions such as leukoplakia. With a view to elucidating the molecular lesions involving oncogenes in oral carcinogenesis, we have investigated myc/ras/EGF-R activation by amplification, point mutation, gene rearrangement and allelic losses. Further, a functionally activated potent transforming gene was detected in a NIH3T3 transfection/tumorigenicity assay, unrelated to myc/ras/EGF-R. Studies on the involvement of p53 gene in oral cancer, indicates p53 allelic loss as an event observed in leukoplakia and tumour tissues. Advanced oral cancer stages demonstrate cumulative molecular aberrations, with greater than 95% samples showing oncogene involvement, thus indicating a multi-step process of oral carcinogenesis. The review presents a comparative picture of the oral malignancies seen in Western countries and India, significance of molecular lesions and future perspectives of oncogenes and tumour suppressor gene involvement in oral cancer.
H-ras-1 restriction fragment length polymorphism in normal individuals and oral cancer patients in India.
Restriction fragment length polymorphism (RFLP) of the human H-ras-1 gene has been indicated as a marker for detection of individuals at high risk of cancer. We have investigated the association of RFLP at the H-ras-1 locus and susceptibility to oral cancer by Southern hybridization analysis in 77 primary oral tumors and 99 healthy donors. The frequency distribution of the BamHI fragments of H-ras-1 revealed homozygous or heterozygous alleles in the two subpopulations. The heterozygous genotype occurred more frequently in the normal subjects (53%) as compared to the cancer patients (36%). Four common alleles-C1 to C4, were noted predominantly in both groups, with rare alleles detected at a lower frequency. The common allele with 7.6 kb BamHI fragment was significantly higher in normals (10%) than in the tumor population (4%) (P < 0.05). However, a similar distribution of rare alleles in both groups indicated that the presence of rare alleles is not indicative of predisposition to oral cancer.
Amplification and overexpression of epidermal growth factor receptor gene in human oropharyngeal cancer.
The presence of epidermal growth factor receptor (EGF-R) gene was determined in 84 patients with squamous cell carcinoma (SCC) of the oropharyngeal region--a highly prevalent, chewing-tobacco associated malignancy in India, using Southern hybridisation analysis of DNA extracted from primary tumor tissues. We observed a 3- to 8-fold amplification of EGF-R gene in 19/66 (29%) of the SCCs of the oral cavity, and about 30-fold EGF-R amplification in 2/18 (11%) hypopharyngeal cancers. Dot blot analysis of total RNA from several tumour tissues, revealed overexpression of the EGF-R gene in the examined patients, with the EGF-R gene amplified. 4 patients with single copy EGF-R gene, did not exhibit overexpression of the gene. Within our sample set, no correlation was evident between EGF-R gene amplification and clinico-pathological parameters of the malignancy. The amplification and overexpression of the EGF-R gene observed in the primary tumour tissues of 25% (21/84) of the human oropharyngeal cancers, indicate possible involvement of the gene in the pathogenesis of these cancers.
Major proteins of mycobacterial strain ICRC and Mycobacterium leprae, identified by antibodies in sera from leprosy patients and their contacts.
Sera from leprosy patients across the clinical spectrum, healthy contacts, tuberculosis patients, and healthy donors were tested for their reactivity with antigens of mycobacterial strain ICRC (a cultivable mycobacterium) and Mycobacterium leprae by immunoprecipitation technique. Using M. leprae antigens, it was not possible to distinguish between reactivities of sera from lepromatous, borderline lepromatous, borderline tuberculoid, and tuberculoid leprosy patients. All these sera identified M. antigens with molecular masses of 47, 36, 21, and 14 kDa. When the same sera were tested for their reactivities with antigens of mycobacterial strain ICRC, several differences were observed. The 21-kDa antigen of mycobacterial strain ICRC was exclusively precipitated by sera from all lepromatous leprosy patients and from those undergoing erythema nodosum leprosum reaction. Sera from all the other donors tested failed to identify the 21-kDa antigen of mycobacterial strain ICRC. The 14-kDa protein of mycobacterial strain ICRC was identified by sera from a few lepromatous leprosy patients (5 of 26) and all their contacts. Our studies indicate that antigens present on cultivable mycobacteria rather than species-specific antigens may prove to be useful in the serodiagnosis of leprosy.
T-cell responses of leprosy patients and healthy contacts toward separated protein antigens of Mycobacterium leprae.
Sonicated extracts of Mycobacterium leprae were separated by two-dimensional gel electrophoresis and electroeluted into 400 distinct soluble fractions. These fractions were probed with T lymphocytes from leprosy patients of different disease types, healthy contacts, and unexposed healthy individuals. Proliferative responses were visualized using three-dimensional stimulation profiles. T cells from many patients and contacts responded to a multitude of antigen fractions of different molecular masses and isoelectric points. T cells from unexposed individuals gave significant responses to lysates or whole organisms of M. leprae, but no or only marginal responses to separated antigen fractions. T cells of polar tuberculoid (TT) and the majority of polar lepromatous (LL) leprosy patients responded only to separated antigen fractions but not to lysates or whole organisms of M. leprae. The remaining LL patients were totally unresponsive and even failed to respond to separated M. leprae fractions. Thus, in some leprosy patients unresponsiveness to M. leprae seems to be caused by distinct components and can be broken by using separated antigen fractions; whereas in others, anergy remains. T cells of borderline tuberculoid (BT) patients, who were under chemotherapy, responded to separated antigen fractions as well as to lysates of M. leprae organisms. In contrast, BT patients who were untreated failed to react with any of the M. leprae preparations. Similarly, T cells of the majority of LL patients responding to separated fractions were under chemotherapy; whereas T cells from untreated LL patients gave no or only marginal responses to any of the M. leprae antigen preparations. These findings suggest some linkage between the degree of T-cell responsiveness and antileprosy drug treatment.
Expression of enhancing factor gene and its localization in mouse tissues.
Enhancing factor (EF), a 14 kDa protein, isolated from mouse small intestines, has been reported from this laboratory. Based on our earlier studies EF has been implicated in cell proliferation. Preliminary immunohistochemical studies have shown EF to be localized in the Paneth cells of small intestines. In this paper we report the tissue distribution of EF using conditions optimized for immunohistochemical staining. In addition, the data are supported by northern blot analysis using a nick translated cDNA probe specific for EF. The results indicate that EF gene is actively transcribed mainly in the intestines. The chief source of synthesis of EF appears to be the Paneth cells located at the base of the crypts of Lieberkühn.
Ontogeny of enhancing factor in mouse intestines and skin.
Enhancing Factor (EF) is a 14 kDa protein isolated from mouse small intestines, which enhances the binding of 125I-EGF to A431 cells. This observation as well as our earlier in vitro studies have indicated that EF is a modulator of EGF. In adult mice, localization of EF by immunohistochemistry shows it is present predominantly in the Paneth cells of the small intestines and to a lesser extent in the stomach and colon. This study of the ontogeny of EF shows that the appearance of the protein coincides with the appearance of mature Paneth cells. In new born mouse skin EF is localized in the hair follicles in the first hair cycle from day 2 to day 8. It is however absent in the adult skin. Thus EF is associated with tissues which have a high growth rate.
Loss of allelic heterozygosity at the harvey ras locus in human oral carcinomas.
The Harvey ras locus was examined for restriction fragment polymorphism and loss of allelic heterozygosity in 62 oral cancer patients. Southern blot analysis on BamHI digests of the tumour tissue DNA, revealed 23 patients with H-ras-1 heterozygosity. The probes used to study the polymorphism were the BamHI 6.6-kb fragment encoding the complete H-ras-1 sequence plus the variable tandem repeat (VTR) region, and the 1-kb MspI fragment encoding the VTR region. The allelic heterozygosity was better resolved by PvuII and further confirmed by TaqI. In addition, TaqI digestion demonstrated a unique VTR rearrangement indicated by 2.1-kb, 0.9-kb and 0.6-kb fragments, implying additional TaqI sites, in three of the patients. Further analysis of matched tumor tissue and peripheral blood cell DNA from the same patient demonstrated tumor-associated loss of one of the allelic fragments in 7/23 (30%) of the patients with H-ras-1 heterozygosity. However, the loss was not significantly correlated to clinicopathological parameters staging the disease. Thus, our data showing loss of H-ras-1 alleles and VTR rearrangement, with relatively high incidence (9/23; 39%) in the oral cancer patients at various stages of the disease, implies H-ras-1 involvement as an early event in the process of oral carcinogenesis.
High frequency mutation in codons 12 and 61 of H-ras oncogene in chewing tobacco-related human oral carcinoma in India.
57 primary tumour samples from Indian oral cancer patients with a 5-15 year tobacco chewing habit, were examined for mutational activation in codons 12, 13 and 61 of the H-ras, K-ras and N-ras oncogenes. The highly sensitive assay based on specific oligonucleotide hybridisation following in vitro amplification of unique sequences by polymerase chain reaction was employed. Mutations were detected in twenty (35%) of the samples and were restricted to H-ras, codons 12, 13 and 61. Two cases had concurrent mutations in codons 12 and 61. The majority of the mutations were at H-ras 61.2 (Glutamine to Arginine) and H-ras 12.2 (Glycine to Valine). Three of the less frequent mutations are apparently novel. Interestingly, eight of the samples with H-ras mutations also showed loss of wild-type H-ras, as judged by absence of signals for wild-type codons 12 or 61 on dot blots. The specific H-ras mutations in these oral malignancies associated with tobacco chewing, may represent an important example of an environmental carcinogen-induced step, in a pathway leading to malignant transformation.
Mitogen induced proliferation and cytokine production by lymphocytes from leprosy patients.
In this paper we have assessed the mitogen responses of leprosy patients and healthy donors in terms of proliferation and cytokine production (Interleukin 2 and Interferon gamma). The patients investigated included untreated and multidrug therapy non-responsive LL patients and MDT responsive LL and TT patients. The mitogen responses of untreated and multidrug therapy non responsive LL patients were not significantly different from those of the healthy donors. It was interesting to note that TT and multidrug therapy responsive LL patients showed higher responses to mitogens than healthy donors as assessed by all three parameters. The results suggest a correlation of increased mitogenic responses with improvement in clinical status in leprosy.
Anti-leprosy vaccines: current status and future prospects.
Different types of leprosy vaccines are currently used in field trials in India. The rationale behind their use, the parameters for determining their efficacy, their merits and demerits are discussed and the future prospects are highlighted.
Mycobacterial cell surface proteins revealed by labeling with 125I.
Explore the source record for details and available documents.
Restriction fragment length polymorphism of the L-myc gene in oral cancer patients.
Restriction fragment length polymorphism (RFLP) of the L-myc gene was examined in DNAs from primary tumour tissues and peripheral blood cells (PBC) of 76 Indian patients with squamous cell carcinoma of the oral cavity, and PBC from 101 normal healthy volunteers. The patients and the normal healthy volunteers were classified into three genetic types according to the polymorphic patterns defined by the two alleles (6.6 kb, S fragment; and 10.0 kb, L fragment). DNA isolated from the PBC of each patient always exhibited the same pattern of L-myc alleles as that observed for the corresponding tumour DNA. However, a striking correlation was found between the RFLP pattern and the stage of differentiation of the tumours, as well as the size of the tumour. Thus, a preponderance of the S fragment was observed in the poor to moderately differentiated tumours and the larger (greater than 4 cm) sized tumours. Further, analysis of L-myc RFLP with the clinical pattern of the malignancy showed no significant correlation with nodal metastasis, TNM staging or recurrence of the tumour. The relative ratios of the three genotypes (L-L, L-S, S-S) in the oral cancer patients were not significantly different from those seen in the healthy Indians, implying no predisposition to oral cancer by either allele. However, our results showed that oral cancer patients with a genotype including an S fragment are more likely to develop a poor to moderately differentiated tumour or a larger tumour than a patient without an S fragment. The L and S alleles were equally distributed in the population, with the frequency of each allele being 0.50, consistent with Hardy-Weinberg's law.
The sociocultural dimension in leprosy vaccine trials.
This paper briefly describes organizational, operational, and sociocultural aspects of the phase-III clinical trials of the ICRC anti-leprosy vaccine in Maharashtra, India. Our experience is that vaccine trials can be launched quickly and more cost effectively by using the services of health personnel from the existing public health infrastructure. That is why the trials could be launched in just 4 months after receiving the financial grant from the Indian Council of Medical Research, New Delhi (India). At the community level, a person-to-person approach in Health Education scores over audio-visual aids and the mass media. The compliance in target groups is increased when preventive programmes are backed-up by curative services and when their privacy and daily routine are not disturbed.