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Affective and behavioral responses to friends who neglect their friends for dating partners: influences of gender, jealousy and perspective.

Adolescents in the ninth grade (n=75) responded to a hypothetical situation involving an individual who neglects their friend as a result of their transition to steady dating. Results indicated that 53 per cent of girls and 32 per cent of boys reported past personal exclusion by their best friend who they perceived to be preoccupied by a romantic partner. Only 21 per cent of girls and 19 per cent of boys reported that they had ignored their best friend in the past while being preoccupied by a romantic partner. There were significant differences in emotional reactions of individuals depending on their gender, level of characteristic jealousy, and the perspective taken in the jealousy triangle. Analyses of suggested behavioral responses revealed a significant difference in verbosity depending on emotional reactions, gender, and level of characteristic jealousy. In general, the strategies adolescents' recommended for handling this situation were constructive, active responses that convey a continuing commitment to the relationship.

Adolescent↗

Lysis of FLD-3 Friend erythroleukemia cells in vitro and in vivo: effect of 89Sr treatment and Friend virus infection.

The effector cells from non-immunized mice capable of lysing 51Cr-labelled FLD-3 BALB/c Friend virus-induced erythroleukemia cells in vitro and cells capable of clearing FLD-3 cells labelled with 5-iodo-2'-deoxyuridine-125I (125IdUrd) from the lungs in vivo were characterized and compared with natural killer (NK) cells reactive against YAC-I lymphoma cells. Unlike NK cells, the cells capable of lysing FLD-3 cells in vitro were insensitive to antibodies directed against NK-2.1 or Thy-1.2 antigens (plus complement) and to pretreatment of mice in vivo with silica particles, 89Sr or estradiol. Heat-killed C. parvum organism stimulated anti-FLD-3 effector cells without changing the slow rate (24 h) of lysis in vitro. The ability to clear FLD-3 and YAC-1 cells from the lung was normal and defective, respectively, in C57BL/6-bg/bg(beige) mice and in mice pretreated with 89Sr or estradiol. We conclude that natural cytotoxic (NC) cells lyse FLD-3 cells, Fv-2, which regulates resistance to leukemia induction by Friend virus, does not regulate NC(FLD-3) activity, and the virus does not affect NC(FLD-3) activity during the first several days of infection of normal genetically susceptible mice. However, infection of 89Sr-treated mice inhibits NC(FLD-3) function owing to the activation of suppressor cells. These data suggest (but do not prove) that effector cells similar or identical to NC(FLD-3) cells may function in vivo to resist the proliferation/survival of certain leukemia cells.

Animals↗

Reduced maturation of Friend virus in adhesive mutants of Friend leukemia cells.

The replication of Friend Leukemia virus (FLV) has been investigated in adhesive clones (FF) of Friend Leukemia cells which were selected via cultivation on top of human fibroblast monolayers. In these adhesive clones a shut-down of FLV production is observed under conditions of culture confluency; this finding is not due either to a reduced number of cell divisions nor to a defective expression of FLV genome as assessed by Northern blot and immunofluorescence studies. Ultrastructural studies showed that virus budding and release into the medium is not detectable under these conditions. Conversely, in confluent FF cell monolayers abundant imperfect type-A enveloped particles were visible, possibly originating from stacks of granular endoplasmic reticulum with thickened membranes. It is postulated that the reduced virus production in adhesive FF monolayers is due to as yet undetermined events taking place during virus maturation at a time coincident with that of cell-cell adhesion under conditions of culture confluency.

Animals↗

Characterization of monoclonal antibodies reactive with murine leukemia viruses: use in analysis of strains of friend MCF and Friend ecotropic murine leukemia virus.

Sixteen mouse and rat monoclonal antibodies reactive with gag or env proteins of Friend murine leukemia virus (F-MuLV) or recombinant MCF viruses related to F-MuLV were derived. Specificity of these was determined by immunofluorescence, immunoprecipitation, and reactivity with viral proteins blotted onto nitrocellulose paper. Seven antibodies reacted with envelope protein antigens of certain nonecotropic viruses only. Nine antibodies reacted with both ecotropic and nonecotropic viruses. Of this latter group, three were antienvelope, four were anti-p15, one was anti-p12, and one was anti-p30 in specificity. When tested as a panel against 10 strains of F-MuLV, these antibodies could distinguish seven different antigenic patterns. However, all 10 strains retained reactivity for three anti-gp70 antibodies uniquely specific for Friend and Rauscher MuLVs. Our antibody panel could also identify MCF viruses isolated from mice neonatally inoculated with F-MuLV as recombinants related to a particular F-MuLV strain based on identity of p15 gag antigenic profiles. However, recombinant viruses lacked several envelope antigens always associated with F-MuLV and instead had new envelope reactivities. These anti-MCF monoclonal antibodies detected no shared envelope antigens between MCF and xenotropic viruses isolated from mice inoculated with F-MuLV, however many of them did react with MCF viruses derived from AKR mice and NFS mice congenic for endogenous ecotropic virus loci.

Animals↗

Identification of an epitope encoded in the env gene of Friend murine leukemia virus recognized by anti-Friend virus cytotoxic T lymphocytes.

We have previously shown that strong epitopes recognized by anti-Friend virus (FV) cytotoxic T lymphocytes (CTL) in H-2b mice are encoded in both the env and gag/pol regions of the helper friend leukemia virus genome. Two approaches have been used to identify these epitopes. At the nucleic acid level, we have constructed env genes with either of two in-frame deletions: pKR2, an env gene with a 681-bp deletion in the gp70 region and inserted into the pSV2-gpt-1 expression vector; and pKR1, an env gene with an 81-bp deletion in the p15E region and inserted into pSV2-gpt-1. Cell clones were established by transfecting Fisher rat embryo cells with pDb (the H-2Db restriction element), pNEO (for G418 selection) and either pKR1 or pKR2. Db and env gene expression was monitored by immunoprecipitation with polyclonal antibodies or by detection of viral RNA on Northern blots. Expressor cell clones were tested for susceptibility to lysis by polyclonal anti-FV/Db CTL in 51Cr-release assays. Whereas cells expressing pKR1 were lysed to the same extent as cells expressing the intact env gene, cells expressing pKR2 were resistant to lysis, suggesting that all detectable env epitopes are encoded within the 681-bp deletion. Polypeptides representing the two most likely candidate epitopes encoded in this segment were synthesized and tested for their abilities to sensitize FRE cells expressing Db alone for lysis by the CTL. One 17-mer polypeptide, AGTGDRLLNLVQGAYQA [corrected], functioned as a strong CTL epitope in this assay, but the other 18-mer polypeptide was inactive. Studies of the role of this epitope in the immune response to candidate viral vaccines are in progress.

Amino Acid Sequence↗

Approach to a retrovirus vaccine: immunization of mice against Friend virus disease with a replication-defective Friend murine leukemia virus.

In an initial attempt to test the ability of replication-defective retroviruses to immunize against immunologically related pathogenic viruses, we have worked with the erythroleukemogenic Friend retrovirus complex (FV), which consists of a replication-competent helper component, Friend murine leukemia virus (FMuLV), and a related defective pathogenic component, spleen focus-forming virus (SFFV). An 81-base-pair deletion was introduced into the p15E-encoding region of the env gene of an otherwise replication-competent molecular clone of the FMuLV provirus. After transfection of this clone into cells that package the viral RNA in MuLV coats, infectious virus was released into the culture medium. Mouse fibroblasts infected with this virus, here called delta FMuLV, expressed the truncated viral env gene products in their cytoplasm but not on cell surfaces, and culture fluids from these cells did not transmit the infection to fresh mouse fibroblasts. In preliminary experiments, immunization of mice of H-2-congenic BALB/c strains with delta FMuLV conferred levels of immunity to FV disease ranging from weak to relatively strong. Immunized mice developed anti-FV IgM and IgG antibodies and cytotoxic T cells. Mice observed for 15 weeks after the first of two immunizations showed no detectable pathology, but delta FMuLV DNA was detectable in livers of some immunized mice for at least 3-6 weeks. These results suggest that our approach to development of retrovirus vaccines may be a useful one.

Animals↗

Subgenomic fragment of molecular cloned Friend murine leukemia virus DNA contains the gene(s) responsible for Friend murine leukemia virus-induced disease.

Friend murine leukemia virus (G-MuLV) is a helper-independent, type C retrovirus isolated from stocks of Friend virus complex (spleen focus-forming virus plus MuLV). In cell culture, F-MuLV has an ecotropic and NB-tropic host range and causes XC cells to fuse. When injected into newborn NIH Swiss mice, F-MuLV produces hepatosplenomegaly, severe anemia, and numerous circulating hematopoietic precursors in the peripheral blood with normal thymus and lymph nodes after 3 to 6 weeks. Recently, we molecularly cloned an 8.5-kilobase pair (kbp) form of F-MuLV DNA from which we could recover the pathogenic F-MuLV virus by DNA transfection of NIH 3T3 cells. From this molecularly cloned F-MuLV DNA, we have now subcloned in pBR322 a 4.1-kbp HindIII fragment which contains in continuity 3.0 kbp from the 3' terminus (env and c region), 0.6 kbp of the terminal repeat sequences, and 0.5 kbp from the 5'terminus of the viral RNA (genome). NIH 3T3 fibroblasts were transfected with this DNA fragment an then infected with the wild mouse amphotropic retrovirus (cl 1504-A). In cell culture, 1504-A is a helper-independent type C virus which has an N-tropic host range and does not cause fusion of XC cells. When injected into newborn NIH Swiss mice, 1504-A does not produce splenomegaly or thymic enlargement in mice held for up to 8 months. The transfection with the F-MuLV fragment and the infection with 1504-A consistently yielded virus preparations that were XC positive. From such virus stocks we were able to isolate both helper-independent and replication-defective XC-positive viruses. The helper-independent virus was shown to be a recombinant virus since it contains a gp70 molecule derived at least in part from F-MuLV and a specific gag precursor derived from 1504-A as determined by radioactive immune precipitation assays. When injected into newborn Swiss mice, the recombinant helper-independent virus caused hepatosplenomegaly in approximately 50% of the mice in 6 to 8 weeks. The histology of the diseased splenic tissue was indistinguishable from that seen in the disease caused by the whole F-MuLV. The replication-defective virus could be pseudotyped with new 1504-A virus, and this viral complex also caused the F-MuLV disease picture when the complex was injected into newborn Swiss mice. We conclude that the genetic information responsible for the pathogenicity of F-MuLV is contained within the 4.1-kbp DNA fragment, which includes env gene sequences, the terminal repeat sequences, and the c region sequences of the F-MuLV genome.

Animals↗

Mutations in the env gene of friend spleen focus-forming virus overcome Fv-2r-mediated resistance to Friend virus-induced erythroleukemia.

Although Fv-2r homozygous mice are resistant to leukemias induced either by an erythropoietin-encoding virus or by wild-type Friend virus (FV) (M. E. Hoatlin, S. L. Kozak, F. Lilly, A. Chakraborti, C. A. Kozak, and D. Kabat, Proc. Natl. Acad. Sci. USA 87:9985-9989, 1990), they are susceptible to some variants of FV (R. A. Steeves, E. A. Mirand, A. Bulba, and P. J. Trudel, Int. J. Cancer 5:349-356, 1970; R. W. Geib, M. B. Seaward, M. L. Stevens, C.-L. Cho, and M. Majumdar, Virus Res. 14:161-174, 1989). To localize the virus gene involved in influencing the host range, we cloned and sequenced the env gene of the BB6 variant of FV (Steeves et al., Int. J. Cancer 5:349-356, 1970). In comparison with the wild-type env gene, the BB6 variant contains a 159-bp deletion that eliminates the membrane-proximal portion of the extracellular domain and 58 point mutations resulting in 13 amino acid changes. Substitution of the variant env gene for the wild-type env gene resulted in a recombinant virus that produced a Friend virus-like disease in Fv-2r homozygotes. Our results identify the spleen focus-forming virus env gene as the viral gene involved in this virus-host interaction. Additionally, they suggest that the product of the Fv-2r gene modifies the interaction between the spleen focus-forming virus envelope protein and the erythropoietin receptor.

Amino Acid Sequence↗

Structural elements in glycoprotein 70 from polytropic Friend mink cell focus-inducing virus and glycoprotein 71 from ecotropic Friend murine leukemia virus, as defined by disulfide-bonding pattern and limited proteolysis.

The disulfide-bonding pattern of glycoprotein 70 (gp70), the surface glycoprotein (SU) encoded by the envelope gene of polytropic Friend milk cell focus-inducing virus, was elucidated and compared with that of glycoprotein 71 (gp71), the corresponding glycoprotein of the ecotropic Friend murine leukemia virus, which had previously been determined (M. Linder, D. Linder, J. Hahnen, H.-H. Schott, and Stirm, Eur. J. Biochem. 203:65-73, 1992). In the carboxy-terminal constant domain, in which these glycoproteins have about 97% sequence homology, the location of the four disulfide bonds was found to be analogous. In the amino-terminal differential domain, with about 37% sequence homology, 8 of the 12 cysteine residues of the ecotropic SU are conserved in the polytropic SU. In this domain, a similar clustering of disulfide bonds was detected, which led to the identification of three distinct disulfide-bonded regions in both glycoproteins. However, because of deletions and sequence deviations, the glycoproteins must have significantly different three-dimensional structures in these regions. Since the receptor-binding functions of both glycoproteins have been attributed to their amino-terminal domains and since each binds to a different receptor, these disulfide-bonded structures are likely candidates for receptor-binding functions. Limited proteolysis of both glycoproteins with various endoproteinases led to the identification of preferential proteolytic sites between disulfide-bonded regions, at the beginning of the hypervariable proline-rich region, and between differential and constant domains, further confirming the structural organization of the folded glycoproteins.

Amino Acid Sequence↗

Assessment of mental health and social problems during multiple friendly visits: the development and evaluation of a friendly visiting program for the isolated elderly.

The Friendly Visitor Program was designed to reduce social isolation. Visits were made by a pair of trained visitors to twenty-three isolated, elderly New York City residents. Pre- and post-testing visits to experimental and control Ss collected data on measures of isolation, adjustment, cognitive impairment and mental state. The major procedure was an hour long structured visit every two weeks for six months and a six month follow-up. For the experimental group only apartment upkeep and mental state improved and isolation diminished at the time of follow-up, indicating friendly visiting probably was therapeutic.

Aged↗

Adults' drug use: relationship to perceived drug use of parents, friends while growing up, and present friends.

Results from a random household survey of the Boston Standard Metropolitan Statistical Area show a consistent and relatively strong association of adults' use of coffee, tobacco, alcohol, tranquilizers, and marijuana with their perceptions of present friends' use. Associations with parents' and past adolescent friends' use are much weaker. The results support efforts to explain illicit drug use with general theories of behavior acquisition and cast doubt on the utility of deviance theories.

Adolescent↗

Characterization of the early and late stages of myelomonocytic leukemia induced by Friend helper-independent virus F-MuLV: isolation and induction of Friend myelomonocytic leukemic cell lines.

With the use of cloned helper-independent Friend leukemia virus (F-MuLV), we have induced a high incidence (approximately 70%) of myelomonocytic leukemia in mice resistant (Fv-6rr or Fv-6rs) to erythroleukemia induction by this virus. The spleen cells from these mice (DBA/2 or BALB/c X DBA/2) were found to contain a high level of progenitor cells capable of forming granulocytic and macrophage colonies (CFU-GM). These CFU-GM, however, were different from those in the spleens of uninfected mice, as they were either very sensitive to or independent of conditioned medium. No erythroid progenitor bursts (BFU-E) or precursor (CFU-E) cells were detected in the spleens of these diseased animals. If these mice with myelomonocytic leukemia were kept alive by transfusion of red blood cells from uninfected mice, tumorigenic cell lines, capable of being transplanted, into adult mice can be isolated. Three such cell lines TTA-1, TTA-3, and TTA-9 have been established, and they retain their morphology of monocytes and macrophages as well as being positive for the monocyte-specific stain alpha-naphthyl-acetate esterase. These myelomonocytic leukemia cell lines can also be induced in culture by spleen cell-conditioned medium to differentiate into macrophages. Other conditioned media such as L-cell-conditioned medium, phytohemagglutinin-stimulated leukocyte-conditioned medium, and WEHI-3 conditioned medium were less effective in their abilities to stimulate differentiation in these myelomonocytic leukemia cell lines.

Animals↗

Normal and Friend virus specific cell compartments in Friend leukemia characterized by their sensitivity to actinomycin D in vivo.

DBA/2 mice were infected with the polycythemia inducing Friend Virus (F-MuLV-P) and treated with different doses of Actinomycin D (Act D) when the whole erythroid cell system, as measured by the CFU-E technique with and without addition of erythropoietin (Ep), had been transformed into Ep-independence. During and after this therapy the different stem cell pools CFU-S, CFU-C, BFU-E and CFU-E (with and without Ep) were studied and their sensitivity to Act D in bone marrow and spleen was compared to that of normal mice, recently published by other authors. There seemed to be no difference in the Act D sensitivity between normal erythropoiesis and Ep-independent erythropoiesis caused by F-MuLV-P. Furthermore a cell called ICPC (infectious centers producing cell) was studied. This cell system, detected by spleen colony formation due to high local virus production in an unirradiated host, proved to be Act D sensitive in the spleen but not in the marrow. When the erythroid cell system regenerated after Act D chemotherapy, all erythroid colony growth was Ep-independent. This means that Act D did not induce normal erythropoiesis as seen with hydroxyurea treatment.

Animals↗

Role of Friend-associated lymphatic leukemia virus in immunization against Friend leukemia complex.

Mice inoculated with Friend leukemia complex (FLC) pretreated with concanavalin A are resistant to FLC challenge only when they have become infected with the FLC-associated lymphatic leukemia virus (LLV). In interpreting states of resistance to FLC induced by various immunizing procedures, the possibility that immunity is sustained by an unrecognized LLV infection should always be considered.

Animals↗

H-2D control of recovery from Friend virus leukemia: H-2D region influences the kinetics of the T lymphocyte response to Friend virus.

A Friend virus (FV)-specific T lymphocyte proliferation assay was used to compare the T lymphocyte responses of H-2 congenic mice that differed in their ability to recover from FV leukemia after inoculation of high virus doses. Gene(s) of the H-2D region influenced the kinetics of this response such that H-2Db/b homozygous mice were positive 6-8 d earlier than H-2Dd/b mice. This correlated with the Rfv-1, H-2D-linked influence on recovery from FV by these mice, and also appeared to explain the prominent effect of virus dose on recovery incidence. These findings were supported by the ability of passively transferred immune splenic T lymphocytes to induce recovery from leukemia at 6 d after FV inoculation, but not at 16 d. H-2a/a mice were found to be unresponsive in the FV-specific T lymphocyte proliferation assay. This effect mapped to the left of H-2D, possibly in the H-2I region, and may be an in vitro manifestation of the Rfv-2 gene. No evidence for nonspecific immunosuppression of the T lymphocyte response to concanavalin A was observed in any of the H-2 congenic F1 mice studied.

Animals↗

Spontaneous regression of Friend virus-induced erythroleukemia. II. regression of Friend murine leukemia virus-induced lymphocytic leukemia.

We characterized several aspects of spontaneous regression of lymphocytic leukemia in mice. The disease, induced by the helper murine leukemia virus (MuLV) component obtained from the regressing Friend virus complex (RFV), was characterized by spleen and lymph node enlargement, thymus involvement, and anemia. Leukemia regression occurred in about 25% of infected mice and resulted in the return of lymphoid organs to near-normal weight and normal histology and the recovery from anemia. A tenfold to 1,000-fold decrease in virus titer was seen in those mice in which leukemia regressed when compared to leukemic animals, although infectious virus was still recoverable from apparently normal spleens. The sera of mice in which leukemia regressed contained potent virus-neutralizing activity that was associated mainly with immunoglobulins. These studies firmly supported the evidence that the regressing phenotype of RFV was due to its helper MuLV component (MuLV-RF).

Animals↗