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Biomedical subjects

L K Miller

Publications and source records attributed to L K Miller.

At least 37 records · Page 2Linked to original sources

Disruption of cellular translational control by a viral truncated eukaryotic translation initiation factor 2alpha kinase homolog.

Phosphorylation of eukaryotic translation initiation factor 2alpha (eIF2alpha) is a common cellular mechanism to limit protein synthesis in stress conditions. Baculovirus PK2, which resembles the C-terminal half of a protein kinase domain, was found to inhibit both human and yeast eIF2alpha kinases. Insect cells infected with wild-type, but not pk2-deleted, baculovirus exhibited reduced eIF2alpha phosphorylation and increased translational activity. The negative regulatory effect of human protein kinase RNA-regulated (PKR), an eIF2alpha kinase, on virus production was counteracted by PK2, indicating that baculoviruses have evolved a unique strategy for disrupting a host stress response. PK2 was found in complex with PKR and blocked kinase autophosphorylation in vivo, suggesting a mechanism of kinase inhibition mediated by interaction between truncated and intact kinase domains.

Animals↗

An efficient way to introduce unique restriction endonuclease sites into a baculovirus genome.

Recombinant baculoviruses which can be linearized at unique sites with restriction endonucleases can greatly facilitate the construction of other recombinants including baculovirus expression vectors and site-specific mutants. We designed a strategy to introduce unique restriction endonuclease sites at virtually any location in a baculovirus genome. The unique sites were first introduced onto a transfer plasmid which also contained in the vector portion of the plasmid an E. coli lacZ gene and a Sse8387I site, a sequence which is not found in the viral genome. Cotransfection of the transfer plasmid and circular viral DNA generated single-crossover recombinant viruses which could be distinguished as blue plaques in the presence of X-gal, a chromogenic indicator for lacZ. Single-crossover recombinants were purposefully isolated and propagated to generate double-crossover recombinants. Viral DNA isolated from the mixed virus population was digested with Sse8387I to linearize only the single-crossover viral DNA; double-crossover recombinants in the progeny viral population resulting from transfection with the Sse8387I-linearized viral DNA mixture were thus highly enriched, making the task of screening much easier. To demonstrate the feasibility of this approach, we introduced Bsu36I sites into the orf24 and the vlf-1 regions of Autographa californica multiple-nucleocapsid nuclear polyhedrosis virus (AcMNPV) to generate recombinant viruses vncBsuorf24 and vncBsuvlf1, respectively. Both recombinant viruses were obtained by screening only ten plaques. This method should also be applicable to other kinds of mutations and may be applicable to other double-stranded DNA viruses.

Animals↗

Role of baculovirus IE2 and its RING finger in cell cycle arrest.

The ie2 gene of Autographa californica nuclear polyhedrosis virus (AcMNPV) is known to transactivate transient expression from viral promoters in a host cell-specific manner. We report that transfection of Spodoptera frugiperda (SF-21) cells with ie2 was sufficient to arrest the cell cycle, resulting in the accumulation of enlarged cells with abnormally high DNA contents. By 72 h posttransfection, more than 50% of ie2-transfected cells had DNA contents greater than 4N. There was no evidence of mitotic spindle formation in these cells, and expression of ie2 appeared to block cell cycle progression in S phase. Several ie2 mutants were analyzed to further define the region of IE2 responsible for arresting the cell cycle. Analysis of these mutants showed that deletion of the RING finger motif eliminated the ability of IE2 to arrest the cell cycle but did not affect its ability to transactivate the ie1 promoter. Moreover, mutation of a single conserved cysteine (C251) of the RING finger motif abolished the ability of IE2 to block cell cycle progression but had no apparent effect on its transregulatory activity. In contrast, a mutant of IE2 containing a deletion of residues 94 to 173 was able to block cell division but lacked trans-regulatory activity. Thus, the ability of IE2 to arrest the cell cycle depended on the integrity of the RING finger motif and was distinct from and independent of its ability to trans-activate the ie1 promoter. IE2 also arrested the division of cells derived from other insect species, Trichoplusia ni (TN-368 and BTI-TN-5B1-4) and Helicoverpa zea (Hz-AM1).

Animals↗

Nineteen baculovirus open reading frames, including LEF-12, support late gene expression.

A set of 18 plasmid subclones of the Autographa californica nuclear polyhedrosis virus genome, each containing an identified late expression factor gene (lef), supports expression from a late viral promoter in transient expression assays in the SF-21 cell line derived from Spodoptera frugiperda. We have constructed a further set of plasmids in which each lef open reading frame (ORF) is controlled by the Drosophila melanogaster heat shock protein 70 (hsp70) promoter and epitope tagged. Failure of this set of plasmids to support transient late gene expression, and the inability of the p47 ORF to replace the p47-containing plasmid supplied in the lef plasmid library, led to the identification of a 19th late expression factor gene (lef-12) located adjacent to the p47 gene. The sequence of lef-12 is predicted to encode a protein of 21 kDa with no homology to any previously identified protein. The set of 19 hsp70-controlled lef ORFs (HSEpiHis lef library) supports transient expression from a late viral promoter. lef-12 did not affect expression from an early baculovirus promoter. In TN-368 cells, which are also permissive for virus replication, lef-12 provided a stimulatory effect but did not appear to be essential.

Amino Acid Sequence↗

Inhibitor of apoptosis proteins physically interact with and block apoptosis induced by Drosophila proteins HID and GRIM.

Reaper (RPR), HID, and GRIM activate apoptosis in cells programmed to die during Drosophila development. We have previously shown that transient overexpression of RPR in the lepidopteran SF-21 cell line induces apoptosis and that members of the inhibitor of apoptosis (IAP) family of antiapoptotic proteins can inhibit RPR-induced apoptosis and physically interact with RPR through their BIR motifs (D. Vucic, W. J. Kaiser, A. J. Harvey, and L. K. Miller, Proc. Natl. Acad. Sci. USA 94:10183-10188, 1997). In this study, we found that transient overexpression of HID and GRIM also induced apoptosis in the SF-21 cell line. Baculovirus and Drosophila IAPs blocked HID- and GRIM-induced apoptosis and also physically interacted with them through the BIR motifs of the IAPs. The region of sequence similarity shared by RPR, HID, and GRIM, the N-terminal 14 amino acids of each protein, was required for the induction of apoptosis by HID and its binding to IAPs. When stably overexpressed by fusion to an unrelated, nonapoptotic polypeptide, the N-terminal 37 amino acids of HID and GRIM were sufficient to induce apoptosis and confer IAP binding activity. However, GRIM was more complex than HID since the C-terminal 124 amino acids of GRIM retained apoptosis-inducing and IAP binding activity, suggesting the presence of two independent apoptotic motifs within GRIM. Coexpression of IAPs with HID stabilized HID levels and resulted in the accumulation of HID in punctate perinuclear locations which coincided with IAP localization. The physical interaction of IAPs with RPR, HID, and GRIM provides a common molecular mechanism for IAP inhibition of these Drosophila proapoptotic proteins.

Animals↗

Baculovirus inhibitors of apoptosis (IAPs) block activation of Sf-caspase-1.

We have investigated the ability of Sf-caspase-1 and two mammalian caspases, caspase-1 and caspase-3, to induce apoptosis in Spodoptera frugiperda Sf-21 insect cells. While the transient expression of the pro-Sf-caspase-1 did not induce apoptosis, expression of the pro-domain deleted form, p31, or coexpression of the two subunits of mature Sf-caspase-1, p19 and p12, induced apoptosis in Sf-21 cells. The behavior of Sf-caspase-1 resembled that of the closely related mammalian caspase, caspase-3, and contrasted with that of the mammalian caspase-1, the pro-form of which was active in inducing apoptosis in Sf-21 cells. The baculovirus caspase inhibitor P35 blocked apoptosis induced by active forms of all three caspases. In contrast, members of the baculovirus inhibitor of apoptosis (IAP) family failed to block active caspase-induced apoptosis. However, during viral infection, expression of OpIAP or CpIAP blocked the activation of pro-Sf-caspase-1 and the associated induction of apoptosis. Thus, the mechanism by which baculovirus IAPs inhibit apoptosis is distinct from the mechanism by which P35 blocks apoptosis and involves inhibition of the activation of pro-caspases like Sf-caspase-1.

Amino Acid Sequence↗

Inhibition of reaper-induced apoptosis by interaction with inhibitor of apoptosis proteins (IAPs).

IAPs comprise a family of inhibitors of apoptosis found in viruses and animals. In vivo binding studies demonstrated that both baculovirus and Drosophila IAPs physically interact with an apoptosis-inducing protein of Drosophila, Reaper (RPR), through their baculovirus IAP repeat (BIR) region. Expression of IAPs blocked RPR-induced apoptosis and resulted in the accumulation of RPR in punctate perinuclear locations which coincided with IAP localization. When expressed alone, RPR rapidly disappeared from the cells undergoing RPR-induced apoptosis. Expression of P35, a caspase inhibitor, also blocked RPR-induced apoptosis and delayed RPR decline, but RPR remained cytoplasmic in its location. Mutational analysis of RPR demonstrated that caspases were not directly responsible for RPR disappearance. The physical interaction of IAPs with RPR provides a molecular mechanism for IAP inhibition of RPR's apoptotic activity.

Animals↗

A role for baculovirus GP41 in budded virus production.

Insect cells infected with tsB1074, a temperature-sensitive mutant of Autographa californica nuclear polyhedrosis virus, exhibit a "single-cell-infection" phenotype whereby the infection progresses through the very late phase culminating in occlusion body formation, but neighboring cells do not become infected. Marker rescue mapping and DNA sequencing correlated a single nucleotide substitution within the baculovirus gp41 gene with the temperature-sensitive phenotype of tsB1074. The product of the gp41 gene, GP41, is an O-glycosylated protein found in occluded but not budded virions [M. Whitford and P. Faulkner (1992) J. Virol. 66, 3324-3329]. However, budded virus was not produced in tsB1074-infected cells at the nonpermissive temperature of 33 degrees, indicating an additional role for GP41 in budded virus formation. Electron microscopy revealed that nucleocapsids were produced but retained in the nucleus of tsB1074-infected cells at 33 degrees. Thus, GP41 was required for the egress of nucleocapsids from the nucleus in the pathway of budded virus synthesis.

Amino Acid Sequence↗

Caenorhabditis elegans CED-4 stimulates CED-3 processing and CED-3-induced apoptosis.

BACKGROUND: Programmed cell death or apoptosis is a key feature of normal development, tissue homeostasis and disease progression in metazoans. Genetic studies in the nematode C. elegans have identified three key genes involved in apoptosis, ced-3, ced-4 and ced-9. Expression of ced-3 and ced-4 is required for the induction of cell death, whereas expression of ced-9 is necessary to inhibit cell death. The precise mechanism by which these genes influence the life or death decision of a cell is not known. In this study, we have expressed the genes in an insect cell line to explore their role in the apoptotic pathway. RESULTS: Co-expression of ced-4 with ced-3 in insect cells stimulated both the induction and the level of CED-3-mediated apoptosis. Stimulation of CED-3-dependent apoptosis by CED-4 was accompanied by accelerated processing of CED-3, which was dependent on the presence of a wild-type CED-3 prodomain and a conserved lysine residue within a putative ATP/GTP-binding motif of CED-4. Co-expression of ced-9 with ced-4 and ced-3 inhibited the ability of CED-4 to stimulate CED-3 processing and CED-3-dependent apoptosis. Although a temperature-sensitive CED-9 mutant was unable to block CED-4 activity and failed to associate with CED-4, a deletion mutant of CED-9 lacking the carboxy-terminal hydrophobic domain could associate with CED-4 and block CED-4 activity. CONCLUSIONS: Our results establish a role for CED-4 in the processing of CED-3 and the stimulation of CED-3-induced apoptosis. Furthermore, we show that CED-9 achieves its anti-apoptotic effect by associating with CED-4 and blocking the ability of CED-4 to process CED-3.

Animals↗

Baculovirus interaction with host apoptotic pathways.

Baculoviruses possess at least two different classes of anti-apoptotic genes which allow them to block apoptosis of their host cells, thereby increasing the infectivity of the virus and extending the range of cells and hosts that can be efficiently infected. One of these genes, p35, encodes a broadly acting inhibitor of the caspase family of cysteine proteases involved in the induction and execution of apoptotic cell death. The other class of genes, the iaps, are found in higher eukaryotes, as well as baculoviruses, and appear to function at an earlier point in the pathway(s) leading to apoptosis. The IAPs appear to have a more limited role, and the action of at least some of these proteins may be confined to a narrower spectrum of signal transduction pathways. Characterization of the iaps has provided insight into the basis of a prominent human genetic disorder. Both classes of baculovirus inhibitors are proving to be useful in unraveling the molecular pathways governing cellular apoptosis.

Animals↗

Anti- and pro-apoptotic activities of baculovirus and Drosophila IAPs in an insect cell line.

The anti-apoptotic activities of two baculovirus IAPs, OpIAP and CpIAP, were directly compared with that of two Drosophila IAPs, DIAP1 and DIAP2, in the same insect cell line, SF-21 cells. Like OpIAP and CpIAP, DIAP1 inhibited actinomycin D-induced apoptosis and apoptosis induced by Doom. Removal of the RING finger of DIAP1 reduced but did not eliminate its anti-apoptotic activity. DIAP2 was unable to inhibit actinomycin-D induced apoptosis but was able to partially inhibit Doom-induced apoptosis. The baculoviral BIR and RING finger regions, when separated, were unable to block apoptosis induced by actinomycin D or Doom. Instead, the BIR regions of OpIAP and CpIAP as well as the RING finger regions of CpIAP and DIAP1 induced apoptosis. Thus, there were significant differences in the manner in which the different domains of the viral and cellular homologues of IAPs interacted with the components of the pathways regulating apoptosis in SF-21 cells.

Journal Article↗

Neurocognitive impairment in human immunodeficiency virus infection is correlated with sexually transmitted disease history.

BACKGROUND AND OBJECTIVES: Neurocognitive impairment is common in human immunodeficiency virus (HIV)-infected subjects. The relationship of sexually transmitted diseases to neurocognitive changes is unknown. GOAL: To establish whether HIV-infected patients with a history of syphilis or gonorrhea have a higher rate of neurocognitive dysfunction. STUDY DESIGN: Neurocognitive function was measured by a battery of quantitative tests in a 453-person HIV-infected cohort and a 219-person HIV-seronegative control group. Neurocognitive function was then correlated with histories of either syphilis or gonorrhea to assess for possible relationships between these sexually transmitted diseases and neurologic impairment. RESULTS: Human immunodeficiency virus-infected subjects with a history of either syphilis or gonorrhea tended to perform worse on neurocognitive testing than their counterparts. This difference could not be explained by educational attainment, age, race or CD4 cell count, and was not noted in the HIV-uninfected control subjects. CONCLUSIONS: Sexually transmitted diseases in HIV-infected subjects are correlated with neurocognitive impairment through an unidentified mechanism.

Adult↗

Identification and characterization of a baculovirus structural protein, VP1054, required for nucleocapsid formation.

The defect in a temperature-sensitive mutant of Autographa californica nuclear polyhedrosis virus, tsN1054, was mapped and characterized. At the nonpermissive temperature of 33 degrees C, this mutant fails to form plaques upon infection of Sf-21 cultured insect cells; infection is limited to a single cell, even though the infection proceeds through the very late phase. Marker rescue mapping and DNA sequencing identified the gene, ORF 54, which was altered by a single nucleotide substitution in tsN1054. Transcriptional analysis of the ORF 54 region identified multicistronic RNAs, from early to very late times of infection, that potentially encode the ORF 54 gene product. Polyclonal antiserum raised to a TrpE-VP1054 fusion protein recognized a 42-kDa late protein, VP1054, in infected-cell lysates. VP1054 was found to be a component of both budded virus and occlusion-derived virions. The level of VP1054 was dramatically reduced in tsN1054-infected Sf-21 cells propagated at 33 degrees C, and electron microscopic analysis of these cells showed that nucleocapsids failed to form in the nuclei of these infected cells. Instead, novel round, electron-dense bodies were found associated with the virogenic stroma in tsN1054-infected cells. Therefore, VP1054 is a virus structural protein required for nucleocapsid assembly.

Amino Acid Sequence↗

Characterization of reaper- and FADD-induced apoptosis in a lepidopteran cell line.

Expression of the reaper gene (rpr) correlates with the initiation of apoptosis in Drosophila melanogaster. Transient expression of rpr in the lepidopteran SF-21 cell line induced apoptosis displaying nuclear condensation and fragmentation, oligonucleosomal ladder formation, cell surface blebbing, and apoptotic body formation. Inhibitors of ICE-family proteases p35 and crmA, as well as members of the iap class of genes, Op-iap and D-iap2, but not bcl-2 family members, blocked rpr-induced apoptosis. Mutational analysis of rpr provided no support for the proposed sequence similarity of Reaper and death domain proteins. Mutations in the N-terminal region of Reaper, which displays sequence similarity to Hid and Grim, other Drosophila gene products correlated with the initiation of apoptosis, suggested that these residues might be functionally important. The mammalian cDNA encoding FADD (Fas-associating protein with a death domain) also induced cell death in SF-21 cells, but death progressed more slowly and with features which distinguished it from rpr-induced apoptosis. Several bcl-2 family members delayed or blocked FADD-induced cellular death. Thus, apoptosis initiated by Reaper progressed by a faster path which appeared to differ from that of FADD-induced apoptosis.

Adaptor Proteins, Signal Transducing↗

Doom, a product of the Drosophila mod(mdg4) gene, induces apoptosis and binds to baculovirus inhibitor-of-apoptosis proteins.

A family of baculovirus inhibitor-of-apoptosis (IAP) genes is present in mammals, insects, and baculoviruses, but the mechanism by which they block apoptosis is unknown. We have identified a protein encoded by the Drosophila mod(mdg4) gene which bound to the baculovirus IAPs. This protein induced rapid apoptosis in insect cells, and consequently we have named it Doom. Baculovirus IAPs and P35, an inhibitor of aspartate-specific cysteine proteases, blocked Doom-induced apoptosis. The carboxyl terminus encoded by the 3' exon of the doom cDNA, which distinguishes it from other mod(mdg4) cDNAs, was responsible for induction of apoptosis and engagement of the IAPs. Doom localized to the nucleus, while the IAPs localized to the cytoplasm, but when expressed together, Doom and the IAPs both localized in the nucleus. Thus, IAPs might block apoptosis by interacting with and modifying the behavior of Doom-like proteins that reside in cellular apoptotic pathways.

Alternative Splicing↗

Sequence, function, and phylogenetic analysis of an ascovirus DNA polymerase gene.

We have sequenced a 5.5-kb region of the DNA genome of the Spodoptera Ascovirus (SAV) containing a DNA polymerase gene. The gene codes for a 1104-amino-acid polypeptide with seven motifs characteristic of DNA polymerases and three additional motifs associated with polymerases possessing 3' to 5' exonuclease activity. The SAV DNA polymerase gene was able to functionally substitute for a baculovirus DNA polymerase gene in a transient assay that relies on origin-specific reporter plasmid DNA replication. Analysis of the predicted DNA polymerase sequence using neighbor-joining and protein parsimony algorithms indicated that this gene was only distantly related to other known viral and cellular DNA polymerases. The SAV DNA polymerase gene is the first ascovirus gene to be identified and sequenced. The molecular phylogenetic analyses of this gene supports the placement of insect ascoviruses in a separate virus family.

Amino Acid Sequence↗