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Biomedical subjects

M J Roth

Publications and source records attributed to M J Roth.

At least 55 records · Page 3Linked to original sources

Oncocytic nodular hidradenoma.

Oncocytic neoplasms are most commonly of salivary, thyroid, parathyroid, and renal origin. Ocular adnexal tumors with oncocytosis have been reported. We report an unusual example of a skin adnexal tumor from the back. A tumor of uncertain duration was excised from a 54-year-old man. Light microscopy of hematoxylin and eosin-stained sections showed a large, fairly well-defined cystic nodular hidradenoma with areas infiltrated by numerous closely arranged, large, uniform, oval and polygonal cells with abundant intensely eosinophilic cytoplasm and small central, dark, round nuclei. No significant cellular atypia or mitotic figures were observed. The cytoplasm of these cells showed markedly positive immunostaining with monoclonal antimitochondrial antibodies. Electron microscopy demonstrated cytoplasm packed with mitochondria. Pure oncocytic tumors usually follow a benign clinical course. The focal presence of oncocytes in an otherwise histologically recognizable tumor apparently does not affect the prognosis, which in this case is the favorable outcome expected for a nodular hidradenoma.

Adenoma, Oxyphilic↗

Characterization of chimeras between the ecotropic Moloney murine leukemia virus and the amphotropic 4070A envelope proteins.

A series of 22 chimeric envelope (env) genes were generated between the ecotropic Moloney murine leukemia virus and the amphotropic 4070A isolate. The chimeric envelopes were expressed within the complete, replication-competent provirus and tested for virus viability by transient expression assays. Eleven of the 22 viruses were viable. Five of these chimeric viruses showed an ecotropic host range, and six exhibited an amphotropic host range and viral interference. The host range determinants map to the first half of the surface (SU) protein. The N-terminal 72 amino acids of 4070A (42 of processed SU) are not required for amphotropic receptor usage. Ecotropic and amphotropic viruses differ in their ability to form large, multinucleated syncytia when cocultured with the rat XC cell line. Ecotropic murine leukemia virus forms large syncytia with XC cells, whereas no syncytia are reported for amphotropic virus. All chimeras which contained the N-terminal half of the ecotropic SU protein, encoding the receptor binding domain, formed the large multinucleated syncytia with XC cells.

3T3 Cells↗

Coordinated disintegration reactions mediated by Moloney murine leukemia virus integrase.

The protein-DNA and protein-protein interactions important for function of the integrase (IN) protein of Moloney murine leukemia virus (M-MuLV) were investigated by using a coordinated-disintegration assay. A panel of M-MuLV IN mutants and substrate alterations highlighted distinctions between the intermolecular and intramolecular reactions of coordinated disintegration. Mispairing of the crossbone single-strand region and altered long terminal repeat (LTR) positioning affected the intermolecular, but not the intramolecular, reactions of coordinated disintegration. Partial components of the crossbone substrate were coordinated by M-MuLV IN, indicating a reliance on both LTR and target DNA determinants for substrate assembly. The intramolecular reaction was dependent on the presence of either the HHCC domain or a crossbone LTR 5' single-stranded tail. An M-MuLV IN mutant without the HHCC domain (Ndelta105) catalyzed reduced levels of double disintegration but not single disintegration. A separately purified HHCC domain protein (Cdelta232) stimulated double disintegration mediated by Ndelta105, suggesting a role of the N-terminal HHCC domain in stable IN-IN and IN-DNA interactions. Significantly, crossbone substrates lacking the LTR 5' tails were not recognized by the fingerless Ndelta105 protein. Collectively, these data suggest similar roles of the HHCC domain and 5' LTR tail in substrate recognition and modulation of IN activity.

Base Sequence↗

Functional domains of Moloney murine leukemia virus integrase defined by mutation and complementation analysis.

Retroviral integrases perform two catalytic steps, 3' processing and strand transfer, that result in the stable insertion of the retroviral DNA into the host genome. Mutant M-MuLV integrases were constructed to define the functional domains important for 3' processing, strand transfer, and disintegration by in vitro assays. N-terminal mutants had no detectable 3' processing activity, and only one mutant which lacks the HHCC domain, Ndelta105, had strand transfer activity. Strand transfer mediated by Ndelta105 showed preference for one site in the target DNA. Disintegration activity of N-terminal mutants decreased only minimally. In contrast, all C-terminal mutants truncated by more than 28 amino acids had no integration or disintegration activity. Activity on a single-strand disintegration substrate did not require a functional HHCC domain but did require most of the C-terminal region. Complementation analysis found that the HHCC region alone was able to function in trans to a promoter containing only the DD(35)E and C-terminal regions and to enhance integration site selection. Increasing the reducing conditions or adding the HHCC domain to Ndelta105 reaction mixtures restored the wild-type strand transfer activity and range of target sites. The reducing agent affected Cys-209 in the DD(35)E region. The presence of C-209 was required for complementation of Ndelta105 by the HHCC region.

Animals↗

Divalent cation modulation of the ribonuclease functions of human immunodeficiency virus reverse transcriptase.

The stimulatory effect of Mg2+ and Mn2+ on the ribonuclease H (RNase H) functions of HIV-1 reverse transcriptase (RT) has been evaluated using a model 90-nt RNA template/36-nt DNA primer. Wild type enzyme exhibits similar endonuclease and directional processing activities in response to both cations, while RNase H activity (hydrolysis of double-stranded RNA) is only evident in the presence of Mn2+. Enzyme altered at the p66 residue Glu478 (Glu478-->Gln478), which participates in metal ion binding, is completely inactive in Mg2+. However, Mn2+ restores specifically its endoribonuclease activity. In the presence of Mn2+, mutant RT also catalyzes specific removal of the tRNA replication primer, eliminating the possibility of contaminating Escherichia coli RNase H in our recombinant enzyme. However, the efficiency with which mutant RT catalyzes transfer of nascent DNA between RNA templates (an event mandating RNase H activity) is severely reduced. These findings raise the possibility that directional processing activity is required to accelerate transfer of nascent DNA between templates during retroviral replication.

Base Sequence↗

Analysis of cysteine mutations on the transmembrane protein of Moloney murine leukemia virus.

Earlier studies of murine leukemia viruses (MuLVs) have reported that a percentage of surface protein (SU) remains covalently associated with transmembrane protein (TM) through formation of disulfide bonds. Among MuLVs, there are three conserved cysteine residues within the extracellular domain of TM. These cysteine residues were substituted individually with serines to define their function and possible role in disulfide bonding with SU. Using oligonucleotide-directed mutagenesis, seven mutant constructs were generated with individual as well as multiple cysteine mutations. Transient transfection of all seven cysteine mutations resulted in nonviable virus. Analysis of intracellular proteins of producer mutant cell lines have demonstrated that precursor envelope protein (gPr80env; SU/TM) is being synthesized, but transport and processing of gPr80env is blocked in the endoplasmic reticulum. Two independent reversions of one cysteine mutation have been isolated and characterized.

Amino Acid Sequence↗

Basal cell carcinoma of the sole.

Basal cell carcinoma (BCC) of the plantar surface of the foot is rare, with only 22 previously reported cases. This clinicopathologic study is based on 20 cases of BCC of the plantar surface and plantar-like surfaces from adjacent lower lateral and medial aspects of the foot, submitted to a large podiatric laboratory from 1986 through June 1992 (total specimens for this period = 518,624; total BCC of lower extremities, below knee = 53). There were 15 women and 5 men. The average patient age was 73 years, with a range from 52 to 92 years. The duration of the lesion before diagnosis was 2 months to 12 years, with an average of 2 years. Three patients had a history of trauma. Podiatric clinical diagnoses included BCC (4), SCC (3), soft tissue tumor (2), nevus (1), granuloma (1), keratosis (2), verucca (1), and psoriasis (1). Follow-up information was available on 10 patients; all were free of disease up to 64 months, with an average follow-up of 15.7 months. Three of 20 BCC showed predominant histologic patterns characteristic of fibroepithelioma of Pinkus (FEP). An additional three BCC showed focal or suggestive patterns of FEP. Fourteen tumors showed ordinary BCC histologic patterns. No multicentric-superficial or morphea like BCC were observed. The relatively high incidence of FEP in BCC of the sole correlates with abundant sweat glands and lack of hair follicles on the plantar surface, in accordance with the recent proposal that FEP derives its histologic pattern from the spread of BCC down eccrine ducts, eventually replacing them with solid strands of tumor.

Aged↗

Extramedullary myeloid cell tumors. An immunohistochemical study of 29 cases using routinely fixed and processed paraffin-embedded tissue sections.

OBJECTIVE: Extramedullary myeloid cell tumors (EMCTs) may be unsuspected clinically and difficult to recognize histologically. Fresh or frozen tissue is often not available for analysis. We studied 29 cases of EMCT using routinely fixed and processed paraffin-embedded tissue, an immunohistochemical method, and a panel of antibodies. PATIENTS: We studied 29 patients with EMCTs: 22 males and 7 females, with a median age of 48 years (range, 5 to 80 years). Histologically, 9 tumors were well differentiated, 16 were poorly differentiated, and 4 were blastic. RESULTS: The Leder stain (napthol-ASD-chloroacetate esterase) was positive in 21 (77.7%) of 27 tumors. Immunohistochemically, the following antibodies reacted with the greatest number of cases: Leu-22 or MT1 (CD43) in 28 (96.6%) of 29, antilysozyme in 27 (96.4%) of 28, and antimyeloperoxidase (MP07) in 21 (91.3%) of 23 cases. Other myeloid lineage-associated antibodies were positive in a subset of cases: antineutrophil elastase (NP57) in 10 (62.5%) of 16, Leu-M1 (CD15) in 7 (46.6%) of 15, and Mac-387 in 6 (40.0%) of 15 cases. The well-differentiated EMCTs reacted with most myeloid-associated antibodies; poorly differentiated and blastic tumors were more often negative. The pan-leukocyte antibody LCA (CD45RB) reacted with 15 (60%) of 25 neoplasms. Three (16.6%) of 18 tumors contained numerous p53-positive cells, ranging from 10% to 50% of the tumor cell population. In 10 cases, exons 5 through 8 of the p53 gene were analyzed using the polymerase chain reaction and single-stranded conformational polymorphism analysis. Gel shifts consistent with mutations were identified in exon 8 of one tumor (10%) that exhibited abundant p53 immunostaining. CONCLUSIONS: Immunohistochemical studies using fixed, paraffin-embedded sections are very useful in the diagnosis of EMCTs. The most sensitive antibodies are anti-CD43, antilysozyme, and antimyeloperoxidase. Immunohistochemical methods are more sensitive than the Leder stain. We found p53 staining in a small subset of cases, in which we were able to confirm evidence of p53 gene mutation using the polymerase chain reaction and single-stranded conformational polymorphism analysis in one case; p53 gene mutations appear to be uncommon in EMCTs.

Adult↗

Specificity of priming reaction of HIV-1 reverse transcriptase, 2'-OH or 3'-OH.

It has not been unambiguously demonstrated whether the priming reaction of human immunodeficiency virus, type 1 (HIV-1) cDNA synthesis initiates with either the 2'-OH or 3'-OH group of the 3'-terminal adenosine residue of tRNA(Lys-3). In this report, we synthesized tRNA(Lys-3) of which the 3'-terminal adenosine residue lacks either a 2'-OH or 3'-OH. These tRNA molecules were used for the HIV-1 cDNA-priming reaction in a cell-free system consisting of a 141-base RNA template and purified HIV-1 reverse transcriptase. It was found that under the conditions used, the tRNA containing the 2'-deoxyadenosine was able to initiate the cDNA synthesis, while the tRNA with the 3'-deoxyadenosine was not. The results show that retroviral reverse transcriptase specifically primes cDNA synthesis from the 3'-OH group. This is in contrast to bacterial reverse transcriptase, which initiates cDNA synthesis from the 2'-OH group of an internal guanosine residue of a template RNA.

Base Sequence↗

Contributions of DNA polymerase subdomains to the RNase H activity of human immunodeficiency virus type 1 reverse transcriptase.

Previous studies showed that an isolated human immunodeficiency virus type 1 (HIV-1) RNase H domain expressed as a fusion protein is highly active in Mn2+, but activity was dependent on a hexahistidine tag located at either the carboxyl or amino terminus of the fusion protein (J. Smith and M. Roth, J. Virol. 67:4037-4049, 1993). It was postulated that a histidine tag can somehow provide a function normally associated with the DNA polymerase domain of HIV-1 reverse transcriptase. To determine the contributions of the DNA polymerase subdomains of HIV-1 reverse transcriptase to its RNase H activity, we have characterized the activity of isolated RNase H domains which include either portions of the connection, the entire connection, or both the thumb and connection as N-terminal extensions. Including increasing lengths of these domains at the N terminus of the RNase H resulted in a progressive increase in Mn(2+)-dependent RNase H activity that was independent of a histidine tag. Activity of the isolated RNase H domains was also stimulated by the addition of independently purified polymerase subdomains. Further, this stimulation was shown to be a result of direct physical interactions between the thumb, connection, and RNase H domains. The connection and thumb subdomains were shown to contribute to substrate binding. The fingers and palm subdomains were found to be essential for Mg(2+)-dependent RNase H activity.

Base Sequence↗

Increased gelatinase A (MMP-2) and cathepsin B activity in invasive tumor regions of human colon cancer samples.

Gelatinase A (MMP-2) and cathepsin B are proteinases which have been proposed to participate in human tumor invasion and metastasis. Precise quantitation of the activity of these enzymes in invading tumors has not been previously described. We utilized a novel tissue microdissection technique to determine levels of enzyme activity in specific microscopic areas of invasive human colon cancer. Tissue specimens smaller than one high power field can be extracted from the samples and analyzed. Increased levels of pro-enzyme and active enzyme forms of gelatinase A (MMP-2) and increased cathepsin B activity were localized in regions of tumor invasion as compared with a matched number of normal epithelial cells from the same patient. Levels of progelatinase B (MMP-9) were also increased in the tumors; however, we did not observe activation of this enzyme. To investigate the mechanism of gelatinase A activation, we amplified DNA of specific microdissected tumor cell populations using polymerase chain reaction. We did not detect a mutation in the activation locus of the enzyme in any of the tumors studied, which suggests that activation may be due to up-regulation of a tumor-associated gelatinase A activating species. Microdissection of frozen tissue sections may prove valuable in the study of proteinases in human tumor invasion as well as in the detection of genetic alterations in human cancers.

Base Sequence↗

Characterization of the forward and reverse integration reactions of the Moloney murine leukemia virus integrase protein purified from Escherichia coli.

The forward and reverse reactions for integration were characterized for the Moloney murine leukemia virus integrase (M-MuLV IN) protein. The M-MuLV IN was recombinantly produced in Escherichia coli, and was purified to greater than 90% homogeneity by a one-step affinity purification scheme. M-MuLV IN was highly active for integration as measured by in vitro cleavage and strand transfer assays. Furthermore, the integration of a model viral substrate into lambda concatamers by IN correctly produced the flanking 4-base pair duplications characteristic of M-MuLV IN. The reverse reaction of integration, disintegration, was also catalyzed by the recombinant M-MuLV IN. Two products were generated, a 3'-recessed long terminal repeat and a ligated target DNA, from a model integration-intermediate substrate in the presence of M-MuLV IN. The requirements and optimal conditions for maximal integration and disintegration activity for M-MuLV IN were determined. The forward and reverse reactions required different concentrations of manganese ion and reductant. Salt was also titrated for the forward and reverse reactions. Sodium chloride inhibited integration, but had little affect on disintegration. Low concentrations of potassium chloride enhanced integration, but had no affect on disintegration. The dinucleotide cleavage, strand transfer, and the disintegration reactions each had a unique pH profile of activity.

Base Sequence↗

Analysis of a temperature-sensitive mutation affecting the integration protein of Moloney murine leukemia virus.

We have previously described a series of mutations in the 3' terminus of the pol gene of Moloney murine leukemia virus which adversely affect the establishment of an integrated provirus (Roth, M. J., Schwartzberg, P., Tanese, N., and Goff, S. P., J. Virol. 64, 4709-4717, 1990). While most of the mutations were unconditionally lethal for virus replication, we now demonstrate that one mutation, in6161-12, a 12-base pair linker insertion into the 3' end of the pol gene, causes a temperature-sensitive phenotype. This mutant virus is temperature-sensitive for IN protein function as well as viral replication.

Animals↗

Malignant schwannoma with melanocytic and neuroepithelial differentiation in an infant with congenital giant melanocytic nevus: a complex neurocristopathy.

We describe an infant girl, born with a pigmented giant nevus, who developed a malignant schwannoma in the retroperitoneum at 16 months of age. At birth the nevus covered over 50% of her body and histologically was a compound nevus with extension into the deep dermis surrounding dermal appendages. The malignant schwannoma was biphasic with areas composed of spindle and round cells. Ultrastructurally, the majority of the tumor cells exhibited a Schwann cell phenotype, but neuroepithelial and melanocytic cells were identified as well. We believe that this constellation of findings represents a form of neurocristopathy. Neurocristopathy, as defined by Bolande (Hum Pathol 5:409-429, 1974), is a disease that results from aberrations in the migration, growth, or cytodifferentiation of neural crest tissues. These diseases may be simple (a singular pathologic process, usually localized) or complex (multiple neuroectodermal lesions). We report this case because the occurrence of retroperitoneal malignant schwannoma arising in a 16-month-old infant born with a pigmented giant nevus is unique, and may represent a previously undescribed form of a complex neurocristopathy.

Female↗

Influence of substrate structure on disintegration activity of Moloney murine leukemia virus integrase.

The disintegration activity of Moloney murine leukemia virus (M-MuLV) integrase (IN) was investigated through structural and sequence modifications of a Y substrate that resembles an integration intermediate. The Y substrates, constructed from individual oligonucleotides, contain a single viral long terminal repeat (LTR) joined to a nicked target DNA. Truncation of the double-stranded LTR sequences distal to the conserved 5'-CA-3' dinucleotide progressively diminished disintegration activity. M-MuLV IN was also able to catalyze disintegration of a heterologous double-stranded LTR sequence. Significantly, the activity of M-MuLV IN on single-stranded LTR Y substrates was more dependent on the sequence and length of the LTR strand than that reported for human immunodeficiency virus type 1 (HIV-1) IN. Modifications introduced at the Y-substrate junction demonstrated that the 3'-hydroxyl group at the terminus of the target strand was necessary for efficient joining of the target DNA strands. The presence of a 2'-hydroxyl group at the 3' end of the target strand, as well as a single-nucleotide gap at the LTR-target junction, reduced disintegration activity. The absence of hydroxyl groups on the terminal nucleotide abolished joining of the target strands. The results presented here suggest that M-MuLV IN disintegration activity is dependent on substantially different LTR sequence requirements than those reported for HIV-1 IN and may be mediated primarily through a structural recognition event.

Base Sequence↗

Mutational analysis of the envelope gene of Moloney murine leukemia virus.

The env gene products of Moloney murine leukemia virus are required for binding and entry of the virus into the target cell. Thirty-three linker insertion mutations were constructed throughout the env gene of Moloney murine leukemia virus. Twenty of the mutations were located in the surface protein (SU), and the remaining thirteen were located in the transmembrane protein (TM). The viability of the viruses containing these env gene mutations was determined by performing transient transfections and screening for the release of reverse transcriptase. Eleven viable mutants were isolated, nine in SU and two in TM. Three of the viable mutants were temperature sensitive. Four of the viable mutants were clustered in the carboxy terminus of SU. The env gene products of transfected cell lines which produced viable virus were analyzed. Our results indicated two regions of SU important for the stability of the SU/TM heteropolymer and one region important for the interaction of the env gene products with the viral core.

3T3 Cells↗