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The class-3 semaphorins (sema3s) include seven family members. Six of them bind to neuropilin-1 (np1) or neuropilin-2 (np2) receptors or to both, while the seventh, sema3E, binds to the plexin-D1 receptor. Sema3B and sema3F were previously characterized as tumor suppressors and as inhibitors of tumor angiogenesis. To determine if additional class-3 semaphorins such as sema3A, sema3D, sema3E and sema3G possess anti-angiogenic and anti-tumorigenic properties, we expressed the recombinant full length semaphorins in four different tumorigenic cell lines expressing different combinations of class-3 semaphorin receptors. We show for the first time that sema3A, sema3D, sema3E and sema3G can function as potent anti-tumorigenic agents. All the semaphorins we examined were also able to reduce the concentration of tumor associated blood vessels although the potencies of the anti-angiogenic effects varied depending on the tumor cell type. Surprisingly, there was little correlation between the ability to inhibit tumor angiogenesis and their anti-tumorigenic activity. None of the semaphorins inhibited the adhesion of the tumor cells to plastic or fibronectin nor did they modulate the proliferation of tumor cells cultured in cell culture dishes. However, various semaphorins were able to inhibit the formation of soft agar colonies from tumor cells expressing appropriate semaphorin receptors, although in this case too the inhibitory effect was not always correlated with the anti-tumorigenic effect. In contrast, the anti-tumorigenic effect of each of the semaphorins correlated very well with tumor cell expression of specific signal transducing receptors for particular semaphorins. This correlation was not broken even in cases in which the tumor cells expressed significant concentrations of endogenous semaphorins. Our results suggest that combinations of different class-3 semaphorins may be more effective than single semaphorins in cases in which tumor cells express more than one type of semaphorin receptors. 相似文献
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Gruda R Achdout H Stern-Ginossar N Gazit R Betser-Cohen G Manaster I Katz G Gonen-Gross T Tirosh B Mandelboim O 《Journal of immunology (Baltimore, Md. : 1950)》2007,179(6):3655-3661
The activity of NK cells is regulated by activating receptors that recognize mainly stress-induced ligands and by inhibitory receptors that recognize mostly MHC class I proteins on target cells. Comparing the cytoplasmic tail sequences of various MHC class I proteins revealed the presence of unique cysteine residues in some of the MHC class I molecules which are absent in others. To study the role of these unique cysteines, we performed site specific mutagenesis, generating MHC class I molecules lacking these cysteines, and demonstrated that their expression on the cell surface was impaired. Surprisingly, we demonstrated that these cysteines are crucial for the surface binding of the leukocyte Ig-like receptor 1 inhibitory receptor to the MHC class I proteins, but not for the binding of the KIR2DL1 inhibitory receptor. In addition, we demonstrated that the cysteine residues in the cytoplasmic tail of MHC class I proteins are crucial for their egress from the endoplasmic reticulum and for their palmitoylation, thus probably affecting their expression on the cell surface. Finally, we show that the cysteine residues are important for proper extracellular conformation. Thus, although the interaction between leukocyte Ig-like receptor 1 and MHC class I proteins is formed between two extracellular surfaces, the intracellular components of MHC class I proteins play a crucial role in this recognition. 相似文献
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Subcellular localization determines the delicate balance between the anti- and pro-apoptotic activity of Livin 总被引:4,自引:0,他引:4
Nachmias B Lazar I Elmalech M Abed-El-Rahaman I Asshab Y Mandelboim O Perlman R Ben-Yehuda D 《Apoptosis : an international journal on programmed cell death》2007,12(7):1129-1142
Livin is a member of the Inhibitor of Apoptosis Protein family which inhibits apoptosis induced by a variety of stimuli. We
previously identified Livin and demonstrated that following apoptotic stimuli, Livin is cleaved by effector caspases to produce
a truncated form with paradoxical pro-apoptotic activity. In the present study, we reveal that while full-length Livin shows
diffuse cytoplasmic localization, truncated Livin (tLivin) is found in a peri-nuclear distribution with marked localization
to the Golgi apparatus. Using mutation analysis, we identified two domains that are crucial for the pro-apoptotic activity
of tLivin: the N-terminal region of tLivin which is exposed by cleavage, and the RING domain. We demonstrate that, of the
N-terminal sequence, only the first N-terminal glycine residue dictates the peri-nuclear distribution of tLivin. However,
while the perinuclear localization of tLivin is essential, it is not sufficient for tLivin to exert its pro-apoptotic function.
Once tLivin is properly localized, an intact RING domain enables its pro-apoptotic function.
Electronic Supplementary Material Supplementary material is available in the online version of this article at . 相似文献
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Walter Jaoko Etienne Karita Kayitesi Kayitenkore Gloria Omosa-Manyonyi Susan Allen Soe Than Elizabeth M. Adams Barney S. Graham Richard A. Koup Robert T. Bailer Carol Smith Len Dally Bashir Farah Omu Anzala Claude M. Muvunyi Jean Bizimana Tony Tarragona-Fiol Philip J. Bergin Peter Hayes Martin Ho Kelley Loughran Wendy Komaroff Gwynneth Stevens Helen Thomson Mark J. Boaz Josephine H. Cox Claudia Schmidt Jill Gilmour Gary J. Nabel Patricia Fast Job Bwayo 《PloS one》2010,5(9)
Background
We conducted a double-blind, randomized, placebo-controlled Phase I study of a recombinant replication-defective adenovirus type 5 (rAd5) vector expressing HIV-1 Gag and Pol from subtype B and Env from subtypes A, B and C, given alone or as boost following a DNA plasmid vaccine expressing the same HIV-1 proteins plus Nef, in 114 healthy HIV-uninfected African adults.Methodology/Principal Findings
Volunteers were randomized to 4 groups receiving the rAd5 vaccine intramuscularly at dosage levels of 1×1010 or 1×1011 particle units (PU) either alone or as boost following 3 injections of the DNA vaccine given at 4 mg/dose intramuscularly by needle-free injection using Biojector® 2000. Safety and immunogenicity were evaluated for 12 months. Both vaccines were well-tolerated. Overall, 62% and 86% of vaccine recipients in the rAd5 alone and DNA prime - rAd5 boost groups, respectively, responded to the HIV-1 proteins by an interferon-gamma (IFN-γ) ELISPOT. The frequency of immune responses was independent of rAd5 dosage levels. The highest frequency of responses after rAd5 alone was detected at 6 weeks; after DNA prime - rAd5 boost, at 6 months (end of study). At baseline, neutralizing antibodies against Ad5 were present in 81% of volunteers; the distribution was similar across the 4 groups. Pre-existing immunity to Ad5 did not appear to have a significant impact on reactogenicity or immune response rates to HIV antigens by IFN-γ ELISPOT. Binding antibodies against Env were detected in up to 100% recipients of DNA prime - rAd5 boost. One volunteer acquired HIV infection after the study ended, two years after receipt of rAd5 alone.Conclusions/Significance
The HIV-1 rAd5 vaccine, either alone or as a boost following HIV-1 DNA vaccine, was well-tolerated and immunogenic in African adults. DNA priming increased the frequency and magnitude of cellular and humoral immune responses, but there was no effect of rAd5 dosage on immunogenicity endpoints.Trial Registration
ClinicalTrials.gov NCT00124007相似文献8.
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Boaz G. Oliveira Tamires F. Costa Regiane C. M. U. Araújo 《Journal of molecular modeling》2013,19(9):3551-3568
In this theoretical work, a new idea about cooperativity in intermolecular clusters of CnHm???HCN???HW stabilized by hydrogen bonds composed by lone-electron pairs (nitrogen) and π clouds (C?=?C and C?≡?C) as proton acceptors is developed. The structural study and vibrational analysis have pointed out deformations in the intermolecular clusters caused by the HW terminal proton-donor, in which if W?=?fluorine the largest perturbation occurs. On the contrary, the HCN molecule is considered an intermolecular mediator because its structure is practically unaltered upon the formation of the trimolecular complexes. In order to understand the real contribution of the proton-donor either mediator (HCN) or terminal (HW with W?=?CN or F), a chemometric analysis was performed uniquely to discover which interaction plays a key role in the collapse of the cooperative effect. The formation of strongest interactions leads to more drastic variations in the energy distribution. In this way, the application of the quantum theory of atoms in molecules (QTAIM) has been extremely important because the hydrogen bond strengths followed by indiciums of covalence were predicted, and therefore the cooperative effect could be understood at last. 相似文献