PubMed HealthSearch

Biomedical subjects

G Franchini

Publications and source records attributed to G Franchini.

At least 19 recordsLinked to original sources

Protein isoforms encoded by the pX region of human T-cell leukemia/lymphotropic virus type I.

The pX region of the human T-cell leukemia/lymphotropic virus type I (HTLV-I) contains at least four open reading frames (orfI-orfIV). orf III and orf IV encode the regulatory HTLV-I proteins Rex and Tax, which together modulate viral expression, and the p21rex protein of unknown function. By using the reverse transcriptase and polymerase chain reaction techniques on the RNA of an HTLV-I-infected cell culture, we uncovered the existence of alternatively spliced mRNAs generated through the use of three splice acceptor sites. These mRNAs encoded protein isoforms derived from the HTLV-I orf I (p12I) and orf II (p13II and p30II). An additional acceptor splice site, used in the processing of the env and tax/rex mRNAs and a singly spliced mRNA for the p21rex protein, was also identified. All of these HTLV-I mRNAs were also detected in freshly isolated cells from HTLV-I-infected individuals. Thus HTLV-I, like the human immunodeficiency virus type 1, has developed fine posttranscriptional mechanisms to increase the complexity of its genome.

Amino Acid Sequence

In vitro infection of human macrophages by human T-cell leukemia/lymphotropic virus type I (HTLV-I).

HTLV-I is associated with a neurological syndrome designated Tropical Spastic Paraparesis/HTLV-I associated myelopathy (TSP/HAM). To determine whether HTLV-I can replicate in human primary macrophages and thus contribute to HTLV-I dissemination in the nervous system, elutriated human macrophages were infected cell-free with the HTLV-ICR and HTLV-IBOU isolates from patients with adult T-cell leukemia and TSP/HAM, respectively. Viral production was monitored by measuring the viral p24 gag antigen in the cell culture supernatant, by electron microscopy (EM) and by polymerase chain reaction (PCR) on viral DNA and RNA. The HTLV-I p24 gag antigen was detected 21 days after infection with either isolate, and the presence of mature viral particles was demonstrated by electron microscopy one month after infection. Viral sequences were amplified by PCR analysis of the infected macrophages' DNA. Spliced mRNAs for the p40tax and p27rex proteins, as well as the p12I, and p30II proteins encoded by the pX region were readily identified by reverse transcriptase PCR. Altogether, these data indicate that HTLV-I replication occurs in vitro in primary human macrophages. Whether macrophage infection occurs also in vivo and is a crucial step in the induction of the neurological manifestations observed in TSP/HAM remains an open question.

Base Sequence

Low degree of human T-cell leukemia/lymphoma virus type I genetic drift in vivo as a means of monitoring viral transmission and movement of ancient human populations.

We have studied the genetic variation of human T-cell leukemia/lymphoma virus type I (HTLV-I) isolates in the same individuals over time, as well as of HTLV-I isolates from various parts of the world. The viral DNA fragment studied encodes the carboxy terminus of gp46 and almost all of gp21, both of which are envelope glycoproteins. Samples were obtained from native inhabitants of five African countries, two South American countries, China, the French West Indies, and Haiti and included 14 patients with tropical spastic paraparesis/HTLV-I-associated myelopathy, 10 patients with adult T-cell leukemia, 1 patient with T-cell non-Hodgkin's lymphoma, and 3 healthy HTLV-I-seropositive individuals. DNA analyses of HTLV-I sequences demonstrated that (i) little or no genetic variation occurred in vivo in the same individual or in different hosts from the same region carrying the same virus, regardless of their clinical statuses; (ii) changes in nucleotide sequences in some regions of the HTLV-I genome were diagnostic of the geographical origin of the viruses; (iii) HTLV-I sequences from West African countries (Mauritania and Guinea Bissau) and some from the Ivory Coast and Central African Republic were virtually identical to those from the French West Indies, Haiti, French Guyana, and Peru, strongly suggesting that at least some HTLV-I strains were introduced into the New World through infected individuals during the slave trade events; and (iv) the Zairian HTLV-I isolates represent a separate HTLV-I cluster, in which intrastrain variability was also observed, and are more divergent from the other HTLV-I isolates. Because of the low genetic variability of HTLV-I in vivo, the study of the proviral DNA sequence in selected populations of infected individuals will increase our knowledge of the origin and evolution of HTLV-I and might be useful in anthropological studies.

Base Sequence

Cross-neutralization of human immunodeficiency virus type 1 and 2 and simian immunodeficiency virus isolates.

In contrast to infrequent and low-titer cross-neutralization of human immunodeficiency virus type 1 (HIV-1) isolates by HIV-2- and simian immunodeficiency virus (SIV)-positive sera, extensive cross-neutralization of HIV-2NIH-Z, SIVMAC251, and SIVAGM208K occurs with high titer, suggesting conservation of epitopes and mechanism(s) of neutralization. The V3 regions of HIV-2 and SIV isolates, minimally related to the HIV-1 homolog, share significant sequence homology and are immunogenic in monkeys as well as in humans. Whereas the crown of the V3 loop is cross-reactive among HIV-1 isolates and elicits neutralizing antibodies of broad specificity, the SIV and especially HIV-2 crown peptides were not well recognized by cross-neutralizing antisera. V3 loop peptides of HIV-2 isolates did not elicit neutralizing antibodies in mice, guinea pigs, or a goat and together with SIV V3 peptides did not inhibit serum neutralization of HIV-2 and SIV. Thus, the V3 loops of HIV-2 and SIV do not appear to constitute simple linear neutralizing epitopes. In view of the immunogenicity of V3 peptides, the failure of conserved crown peptides to react with natural sera implies a significant role of loop conformation in antibody recognition. Our studies suggest that in addition to their grouping by envelope genetic relatedness, HIV-2 and SIV are neutralized similarly to each other but differently from HIV-1. The use of linear peptides of HIV-2 and SIV as immunogens may require greater attention to microconformation, and alternate subunit approaches may be needed in exploiting these viruses as vaccine models. Such approaches may also be applicable to the HIV-1 system in which conformational epitopes, in addition to the V3 loop, participate in virus neutralization.

Acquired Immunodeficiency Syndrome

In vivo genetic variability of the human immunodeficiency virus type 2 V3 region.

The principal neutralizing epitope of the human immunodeficiency virus type 1 (HIV-1) lies between two invariant cysteines in the third variable region (V3) of the viral envelope (gp120), and its amino acid sequence varies among different HIV-1 isolates. HIV-2 carries an analogous amino acid sequence between two cysteines of the V3 regions, but its functional similarity with the HIV-1 principal neutralizing epitope is uncertain. We studied the degree of genetic variation of the HIV-2 V3 region in fresh blood samples from 12 HIV-2-seropositive individuals from Guinea-Bissau. Polymerase chain reaction was used to amplify viral fragments of 465 bp containing the V3 region from cellular DNA. Nucleotide sequence analysis of the entire envelope fragment from each patient revealed that the degree of variation among field isolates of HIV-2 is comparable to that observed in the analogous region of HIV-1. Most of the HIV-2 isolates studied were highly related, suggesting the existence of a limited number of different viral strains in the cohort studied. Thus, the HIV-2 and HIV-1 V3 regions vary to a similar degree and may also have analogous functions.

Amino Acid Sequence

Effect of reciprocal complementation of two defective human immunodeficiency virus type 1 (HIV-1) molecular clones on HIV-1 cell tropism and virulence.

Human immunodeficiency virus type 1 (HIV-1) displays both interstrain and intrastrain genetic variability. Virus populations with extensive microheterogeneity have been defined as swarms or quasispecies. Many of the genomes within HIV-1 swarms appear to be defective in one or more genes required for viral replication. It is unclear to what extent defective viruses play a role in the process of HIV-1 infection or in the pathogenesis of AIDS. We have isolated two biologically active HIV-1 clones: LW 12.3, which contains defects in the vif and vpr genes, and MN ST.1, which has a defect in the vpu gene. LW 12.3 is unable to replicate in peripheral blood mononuclear cells (PBMC). The growth of MN-ST.1 in SupT1 cells is marked by a 3-week lag in extracellular virus production and by the presence of unusually abundant viral buds. We demonstrate here that coinfection of PBMC with these two partially defective HIV-1 clones extends the cellular host range of LW 12.3, significantly increases the replication rate of both viral genomes, and eliminates the delay in production observed with the vpu-defective MN ST.1. When the lesions in vpr and vif of LW 12.3 are repaired, the resultant virus grows normally in PBMC. This is also the case when only vif is repaired, indicating that complementation of LW 12.3 in PBMC by MN ST.1 is mediated by vif in trans. The reciprocal complementation results in a dramatic increase of HIV-1 virulence. This two-component model represents a simplified version of the in vivo situation and illustrates one way in which interaction of defective viruses could increase the spread of infection and progression of disease.

Base Sequence

HER-2/neu oncogene expression and DNA ploidy in normal human kidney and renal cell carcinoma.

Using flow cytometry (FCM), we have investigated both the DNA content (stained with propidium iodide) and HER-2/neu oncogene expression (revealed by means of an anti-HER-2/neu monoclonal antibody) in neoplastic and non-neoplastic kidney samples from 20 patients with renal cell carcinoma. All the non-neoplastic samples and 15/20 (75%) renal cell cancers showed diploid modal DNA content while the remaining 5 neoplastic sample (25%) showed both diploid and hyperdiploid cell populations. In normal kidney the level of HER-2/neu oncoprotein was low (median fluorescence values in arbitrary units = 7.5 AU, range: 4-10 AU). In diploid renal cancers the level of HER-2/neu was slightly increased (median fluorescence values = 20 AU, range: 9.5-30 AU) (p < .005). The relationship of HER-2/neu expression to the cell cycle in these tumor samples is not clear since most of the cells express the antigen in all phases of the cell cycle. On the other hand, there is an association between HER-2/neu expression and abnormal DNA content suggesting that aneuploid pattern may be biologically related to overexpression of the HER-2/neu gene.

Aneuploidy

[HTLV-I retroviral variant in Zaire in patient with chronic neuromyelopathy. Nucleotidic sequence of the envelope gene].

The oncoretrovirus HTLV-I is the etiological agent of adult T cell leukemia (ATL) and tropical spastic paraparesis/HLTV-I associated myelopathy (TSP/HAM). In contrast to the human lentiretroviruses, HIV-I and HIV-2, the causative agents of AIDS, HTLV-I is genetically very stable. We report here the molecular characterization of the envelope gene of an HTLV-I variant present in a TSP/HAM patient from Zaïre, raising the question of its relevance to disease or the ethnic and/or geographical origin of the patient.

Base Sequence

Highly divergent molecular variants of human T-lymphotropic virus type I from isolated populations in Papua New Guinea and the Solomon Islands.

To determine the molecular genetic relationship between Melanesian strains of human T-lymphotropic virus type I (HTLV-I) and cosmopolitan prototype HTLV-I, we amplified by PCR, then cloned, and sequenced a 522-base-pair region of the HTLV-I env gene in DNA extracted from uncultured (fresh) and cultured peripheral blood mononuclear cells obtained from six seropositive Melanesian Papua New Guineans and Solomon Islanders, including a Solomon Islander with HTLV-I myeloneuropathy. Unlike isolates of HTLV-I from Japan, the West Indies, the Americas, and Africa, which share greater than or equal to 97% sequence homology, the Melanesian strains of HTLV-I were only 91.8%-92.5% identical with a prototype Japanese HTLV-IATK-1. The nucleotide sequence of proviral DNA from the Solomon Islander with HTLV-I myeloneuropathy also diverged markedly from that of HTLV-I isolated from Japanese patients with HTLV-I-associated myelopathy and from Jamaican patients with tropical spastic paraparesis, suggesting that these variant viruses are capable of causing disease. The HTLV-I variants from Papua New Guineans, in turn, differed by nearly 4% from the Melanesian variants from Solomon Islanders, indicating the existence of another HTLV-I quasi-species. By contrast, HTLV-I strains from two residents of Bellona Island, a Polynesian Outlier within the Solomon Islands, were closely related to cosmopolitan prototype HTLV-I (greater than or equal to 97% sequence identity), suggesting recent introduction, possibly during this century. These findings are consistent with a proto-Melanesian HTLV-I strain of archaic presence, which evolved independently of contemporary cosmopolitan strains, and pose new questions about the origin and global dissemination of HTLV-I.

Adult

Proliferating cell nuclear antigen (PCNA)/cyclin expression during the cell cycle in normal and leukemic cells.

Bivariate flow cytometric analysis of the cell proliferation-associated nuclear protein, identified as the "proliferating cell nuclear antigen" (PCNA)/cyclin and of nuclear DNA content, was performed in quiescent and mitogen-stimulated human peripheral blood lymphocytes, in EUE (human embryonic epithelium) cells, before and after a long-term exposure to a hypertonic (HT) medium, in 4 human leukemic cell lines and in fresh bone marrow (BM) cells from 10 patients with untreated acute non-lymphoblastic leukemia (ANLL). The PCNA/cyclin was detected using both an autoantibody extracted from sera of systemic lupus erythematosus patients and the recently produced mouse monoclonal antibody (MoAb) IgG, named 19F4. The distribution of cells in the different phases of the cycle and the percentage of S-phase cells were obtained in duplicate samples, by DNA flow cytometry (FCM) and by dual parameter FCM of DNA content and bromodeoxyuridine (BUDR) incorporation. In all cell types, the non-specific cytoplasmic background fluorescence was significantly lower with the MoAb compared to that obtained with the polyclonal Ab. The percentage of PCNA-positive cells (both with the autoantibody and the 19F4 MoAb) was always higher than that of S-phase cells by DNA FCM and of BUDR-labeled cells. The pattern of PCNA-expression in both normal proliferating cells and acute leukemia cells, showed that most G0/G1 cells did not express significant amounts of PCNA; an increase in PCNA immunofluorescence was found in late G1 cells, and further increases were observed in S- and G2-M phase cells. PCNA/cyclin, as revealed both with autoantibodies and with the 19F4 MoAb, is associated with all actively or potentially dividing (i.e. G1, S and G2-M) cells thus identifying the proliferative cellular compartment. Combined with the use of multiparameter FCM techniques, the PCNA immunolocalization offers a useful tool to study cell kinetics in normal and leukemic human cell populations.

Antibodies, Monoclonal

Human T-cell leukemia-lymphoma virus type I (HTLV-I) expression in fresh peripheral blood mononuclear cells from patients with tropical spastic paraparesis/HTLV-I-associated myelopathy.

Tropical spastic paraparesis/human T-cell leukemia-lymphoma virus type I (HTLV-I)-associated myelopathy (TSP/HAM) is a chronic neurological illness epidemiologically associated with HTLV-I infection. We investigated the role of HTLV-I in the pathogenesis of this disease by studying viral expression in fresh uncultured peripheral blood mononuclear cells (PBMCs) of six patients of Caribbean origin with TSP/HAM. The PBMC genomic DNA of all the patients studied carried HTLV-I provirus, but viral expression was not detected by Northern (RNA) blot analysis of total cellular PBMC RNA. When the reverse transcriptase polymerase chain reaction technique was used with primers specific for the tax-rex mRNA, all of the samples were positive for this viral mRNA species, regardless of the duration of the illness (range, 2 to 13 years). The splice junctions for the tax-rex mRNA described in cases of HTLV-I-induced adult T-cell leukemia (position 5183 of the envelope and position 7302 of the pX region) were identical in three TSP/HAM cases studied. To ascertain whether viral expression occurred at a low level in many cells or at a high level in a few permissive cells, we performed in situ hybridization on fresh PBMCs from two patients (2 and 7 years after clinical diagnosis), seeking HTLV-I RNA sequences. Our finding indicated that in vivo HTLV-I expression occurred at a high level in a few cells (1 of every 5,000 PBMCs) in both cases studied. The fact that cells of all six patients with TSP/HAM were positive for viral expression, regardless of the time lag from diagnosis, suggests that persistent expression of a viral product(s) may be pivotal in the pathogenesis of TSP/HAM.

Adult

Dispensable role of the human immunodeficiency virus type 2 Vpx protein in viral replication.

Human immunodeficiency virus type 2 (HIV-2) is similar in genetic organization to HIV-1 but contains a unique gene (vpx) that encodes a 16-kDa protein. A replication-competent molecular clone of HIV-2 (HIV-2sbl/isy) that infects human primary cells in vitro and rhesus monkeys was used to generate three mutations in the vpx gene. In the first mutant, the vpx open reading frame was truncated at amino acid 20; the second mutant was tailored to eliminate the proline-rich carboxyl terminus of the protein; and the third mutant was obtained by addition of four amino acids (KDEL) to the carboxyl terminus of the protein to provide a retention signal in the endoplasmic reticulum. The viral infection kinetics of the three mutant viruses and isogeneic HIV-2sbl/isy in the SupT1 cell line were similar. Slight impairment in the early phases of viral replication was observed during infection of primary human peripheral blood mononuclear cells with the vpx mutant viruses. All of the vpx mutant viruses readily infected macrophages, indicating that vpx expression is dispensable for HIV-2 infection and replication in human macrophages.

Amino Acid Sequence

[Invasive hemodynamic assessment and interventional therapy].

Cardiovascular diseases are the main reason for hospitalization and usually followed by a conservative therapeutic approach. Due to the improvement over the last few years in the results of surgery in the elderly, the number of hemodynamic studies has increased. Hemodynamic studies are generally performed in elderly patients with symptomatic valvular heart disease and acute myocardial infarction with complications. The incidence of complications in the elderly during catheterization and coronarography is higher than in younger but still low. Cardiovascular hemodynamics in the elderly is determined by a combination of lifestyle, the presence of cardiac diseases that increase in prevalence with advancing age (e.g., coronary artery disease) and age-related changes in cardiovascular hemodynamic per se. With age, the tunica media of major blood vessels stiffens. This produces a elevation of systolic blood pressure (afterload) in many elderly patients which in turn increases left ventricular (LV) wall stress and results in mild compensatory LV hypertrophy. This compensatory hypertrophy normalizes wall stress, but produces pertubations in diastolic function such as: a reduction in the rate of both diastolic and LV peak filling, a diminished diastolic compliance associated with LV hypertrophy and a greater dependence upon left atrial contraction to maintain cardiac output. Recently the proportion of these patients who have percutaneous transluminal coronary angioplasty (PTCA) is growing. PTCA can be performed with a high rate of clinical success. Complete revascularization is low, particularly in patients with trivessel disease. The most common reasons for incomplete revascularization were: vessels with chronic total occlusion and vessels with diffuse disease. The rate of major cardiac complications was high among patients at high-risk in the presence of trivessel disease and low left ejection fraction. Long-term results were encouraging. For 90% of patients who had clinical success after PTCA, the end results continued to be beneficial. In conclusion, PTCA is a valid therapeutic alternative in elderly patients with coronary artery disease. In subsets of patients with single and bivessel disease, the short- and long-term outcome is very favourable. In patients with triple vessel disease, early clinical success rate is low but the long-term success rate is, however, acceptable.

Aged

Expanded HIV-1 cellular tropism by phenotypic mixing with murine endogenous retroviruses.

In view of the current interest in in vivo murine models for acquired immunodeficiency syndrome (AIDS), the interaction between human immunodeficiency virus type 1 (HIV-1) and endogenous murine leukemia virus (MuLV)-related retroviruses was investigated with a human leukemic T cell line (PF-382x) that acquired xenotropic MuLV (X-MuLV) after in vivo passage in immunosuppressed mice. Despite similar levels of membrane CD4 expression and HIV-1 125I-labeled gp 120 binding, a dramatic acceleration in the time course of HIV-1 infection was observed in PF-382x compared to its X-MuLV-negative counterpart (PF-382). Moreover, PF-382 cells coinfected by X-MuLV and HIV-1 generated a progeny of phenotypically mixed viral particles, enabling HIV-1 to productively infect a panel of CD4- human cells, including B lymphoid cells and purified normal peripheral blood CD4-/CD8+ T lymphocytes. Mixed viral phenotypes were also produced by human CD4+ T cells coinfected with an amphotropic MuLV-related retrovirus (A-MuLV) and HIV-1. These data show that endogenous MuLV acquired by human cells transplanted into mice can significantly interact with HIV-1, thereby inducing important alterations of HIV-1 biological properties.

Acquired Immunodeficiency Syndrome

Synthesis, oligomerization, and biological activity of the human immunodeficiency virus type 2 envelope glycoprotein expressed by a recombinant vaccinia virus.

The full-length envelope gene from an infectious human immunodeficiency virus type 2 (HIV-2) molecular clone was expressed in CD4+ and CD4- cells by a recombinant vaccinia virus vector. Pulse-chase experiments indicated that gp160 was processed into gp120 and gp41 subunits. Although large amounts of gp120 were shed into the medium, the recombinant vaccinia virus-infected cells fused with uninfected CD4+ cells. The receptor binding of HIV-2 gp120 was further analyzed using a panel composed of nine soluble CD4 mutants containing insertions of 2 amino acids within the first and second immunoglobulin-like domains. Of three mutations previously shown to interfere with HIV-1 gp120 binding, two also interfered with binding of the HIV-2 glycoprotein indicating use of the same binding site. Chemical crosslinking, sucrose gradient sedimentation, and sodium dodecyl sulfate-polyacrylamide gel electrophoresis were employed to study the oligomerization of the envelope protein. The data indicated that gp160 assembles posttranslationally into dimers and higher oligomers that are probably tetramers.

Animals

The human immunodeficiency virus type 2 vpr gene is essential for productive infection of human macrophages.

The human immunodeficiency virus (HIV) genetic determinant(s) responsible for tropism in human T cells or macrophages are not well defined. We studied the role of the HIV type 2 (HIV-2) nef and vpr genes in viral tropism. HIV-2 mutants, lacking either vpr or nef genes, or both vpr and nef, were obtained by site-specific mutagenesis of a biologically active HIV-2 proviral clone (HIV-2sbl/isy), which is infectious in both human T cells and macrophages. Viral progeny carrying mutations of nef, vpr, or of both nef and vpr genes replicated more efficiently than the parental virus in primary human peripheral blood cells and in the human Hut 78 T-cell line. In contrast, the HIV-2 nef- mutant infected human macrophages as efficiently as the parental virus, whereas viruses lacking the vpr gene either alone or in conjunction with the lack of the nef gene did not replicate in macrophages. Thus, some lack of nef in HIV-2 enhances viral replication in T cells and does not interfere with viral replication in primary macrophages, whereas vpr is essential for replication of HIV-2 in human macrophages. Because the parental HIV-2sbl/isy cloned virus also infects rhesus macaques, the use in animal studies of these HIV-2 mutants with differences in cell tropism and rates of replication will be highly useful in understanding the mechanism of viral infectivity and possibly pathogenicity in vivo.

Cell Transformation, Viral