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At least 19 recordsLinked to original sources

Altering enzymatic activity: recruitment of carboxypeptidase activity into an RTEM beta-lactamase/penicillin-binding protein 5 chimera.

The D-Ala-D-Ala carboxypeptidases/transpeptidases (penicillin-binding proteins, PBPs) share considerable structural homology with class A beta-lactamases (EC 3.5.2.6), although these beta-lactamases have no observable D-Ala-D-Ala carboxypeptidase activity. With the objective of recruiting such activity into a beta-lactamase background, we have prepared a chimeric protein by inserting a 28-amino acid segment of PBP-5 of Escherichia coli in place of the corresponding region of the RTEM-1 beta-lactamase. The segment thus inserted encompasses two residues conserved in both families: Ser-70, which forms the acyl-enzyme intermediate during beta-lactam hydrolysis, and Lys-73, whose presence has been shown to be necessary for catalysis. This chimera involves changes of 18 residues and gives a protein that differs at 7% of the residues from the parent. Whereas RTEM beta-lactamase has no D-Ala-D-Ala carboxypeptidase activity, that of the chimera is significant and is, in fact, about 1% the activity of PBP-5 on diacetyl-L-Lys-D-Ala-D-Ala; in terms of free energy of activation, the chimera stabilizes the transition state for the reaction to within about 2.7 kcal/mol of the stabilization achieved by PBP-5. Furthermore, the chimera catalyzes hydrolysis exclusively at the carboxyl-terminal amide bond which is the site of cleavage by D-Ala-D-Ala carboxypeptidase. Though containing all those residues that are conserved throughout class A beta-lactamases and are thought to be essential for beta-lactamase activity, the chimera has considerably reduced activity (approximately 10(-5) on penams such as penicillins and ampicillins as substrates. As a catalyst, the chimera shows an induction period of approximately 30 min, reflecting a slow conformational rearrangement from an inactive precursor to the active enzyme.

Alanine↗

Osteoclast recruiting activity in bone matrix.

An activity that recruits osteoclasts has been identified and partially characterized from bone matrix. Bone-derived osteoclast recruiting activity (BORA) was co-purified with osteogenin, a bone inductive protein. Osteogenin was extracted from bovine bone with 6 M urea and purified by chromatography on hydroxyapatite, heparin-Sepharose and Sephacryl S-200 gel filtration. The biologically active osteoclast formation-stimulating material was further purified by C18 reverse phase HPLC. BORA is obviously distinct from osteogenin and transforming growth factor beta (TGF-beta), since further purified osteogenin and pure TGF-beta did not stimulate the formation of osteoclast-like cells. BORA (0.1-10 micrograms/ml) stimulated the formation of tartrate-resistant acid phosphatase (TRAP)-positive multinucleated cells (MNC) in a dose-dependent manner. These multinucleated cells resorbed bone when cultured on bovine bone slices. The effect of BORA is primarily directed to differentiate osteoclast precursors, since it did not stimulate osteoclast function in in vitro resorption assay where disaggregated rat osteoclasts were cultured on bovine bone slices. However, after 24 h preincubation with 50 nM PTH in the mouse calvaria assay, BORA at 10 micrograms/ml significantly stimulated bone resorption.

Animals↗

Human placental conditioned medium contains monocyte-derived recruiting activity (MRA).

Monocyte-derived recruiting activity (MRA) stimulates the release of granulopoietic colony-stimulating factors (CSF) by endothelial cells. We carried out studies designed to test the hypotheses that human placental conditioned medium (HPCM), a widely utilized source of CSA for in vitro studies, contains both MRA and CSA and that these molecules could be separated on the basis of their isoelectric points. In five separate studies, concentrated samples of HPCM were chromatofocused and fractions tested in bioassays for MRA and CSA. We found that HPCM contains both MRA and CSA, that the majority of the MRA eluted at a pH of from 7.6 to 8.2 and was 2000-fold purified. CSA eluted at pH 5.6 or below. No CSA was detectable in the major MRA peak. We conclude that HPCM contains heterogeneous granulopoietic activities, that the isoelectric points of MRA and CSA are substantially different and that chromatofocusing provides a rapid single-step method for separating these two distinct granulopoietic factors from complex conditioned media.

Colony-Stimulating Factors↗

N-acetylation is required for the lactotrope recruitment activity of alpha-melanocyte-stimulating hormone and beta-endorphin.

Pituitary neurointermediate lobe (NIL) cells obtained from ovariectomized rats and exposed to 17 beta-estradiol in vitro have been shown to release an activity that induces acute recruitment of additional PRL-secreting cells. We have recently reported that alpha MSH, a major secretory product of the NIL, can substitute for this lactotrope-recruiting factor released by NIL cells in response to 17 beta-estradiol. beta-Endorphin (beta END) was not effective in this regard. Inasmuch as the degree of acetylation is critical to the activities of both of these molecules in other systems, we decided to assess its importance to lactotrope-recruiting activity in the present study. Anterior pituitary cells from ovariectomized rats were cultured overnight, exposed to various treatments for 3 h, and then subjected to a reverse hemolytic plaque assay for PRL. Exposure to mono- and diacetylated alpha MSH (N-ac-alpha MSH and di-ac-alpha MSH, respectively) or N-acetylated beta END (N-ac-beta END) caused a significant increase in the fraction of anterior pituitary cells that released PRL. In contrast, the Des-acetylated variants of both molecules had no lactotrope-recruiting activity. In a dose-response study, maximally effective doses of di-ac-alpha MSH and N-ac-beta END were equally effective with respect to their function as lactotrope-recruiting factors. Furthermore, the two peptides acted cooperatively when simultaneously applied in submaximal concentrations. Taken together, these results demonstrate that 1) N-acetylation is an essential requirement for the lactotrope-recruiting activity of alpha MSH and beta END in vitro; and 2) di-ac-alpha MSH and N-ac-beta END can act in a cooperative fashion to recruit additional cells into the PRL-secreting population.

Acetylation↗

An activation-recruitment scheme for use in muscle modeling.

The derivation of a new activation-recruitment scheme and the results of a study designed to test its validity are presented. The activation scheme utilizes input data of processed surface EMG signals, muscle composition, muscle architecture, and experimentally determined activation coefficients. In the derivation, the relationship between muscle activation and muscle fiber recruitment was considered. In the experimental study, triceps muscle force was determined for isometric elbow extension tasks varying in intensity from 10 to 100% of a maximum voluntary contraction (MVC) using both a muscle model that incorporates the activation scheme, and inverse dynamics techniques. The forces calculated using the two methods were compared statistically. The modeled triceps force was not significantly different from the experimental results determined using inverse dynamics techniques for average activation levels greater than 25% of MVC, but was significantly different for activation levels less than 25% of MVC. These results lend support for use of the activation-recruitment scheme for moderate to large activation levels, and suggest that factors in addition to fiber recruitment play a role in force regulation at lower activation levels.

Acceleration↗

Des-acetylated variants of alpha-melanocyte-stimulating hormone and beta-endorphin can antagonize the mammotrope-recruiting activity of their acetylated forms.

We have previously reported that hypophysial neurointermediate lobe peptides, di-acetylated alpha-melanocyte-stimulating hormone (di-ac-alpha-MSH) and N-acetylated beta-endorphin (N-ac-beta-END), can acutely increase the relative number of prolactin-secreting cells in anterior pituitary cell cultures from ovariectomized rats. Inasmuch as the des-acetylated forms of these peptides (des-ac-alpha-MSH and beta-END) were not effective in this regard, we concluded that acetylation was an absolute requirement for manifestation of the recruitment response. The aim of the present study was to determine whether these des-acetylated variants could antagonize the mammotrope-recruiting activity of their acetylated congeners. Treatment of anterior pituitary cell cultures with di-ac-alpha-MSH and N-ac-beta-END increased the relative amount of prolactin secretors above control values. Interestingly, des-acetylated variants of alpha-MSH and beta-END blocked the mammotrope-recruitment activity of their respective acetylated forms. In addition, beta-END antagonized the mammotrope-recruitment activity of di-ac-alpha-MSH while des-ac-alpha-MSH did not attenuate the stimulatory effect of N-ac-beta-END. Given that mammotropes maintained in vivo are exposed to all these peptides, it is possible that these acetylated and non-acetylated congeners may act in an opposing manner to regulate dynamic prolactin release.

Acetylation↗

Monocyte/macrophage recruitment, activation and differentiation modulate interleukin-8 production: a paracrine role of tumor-associated macrophages in tumor angiogenesis.

Tumor-associated macrophages (TAM) have been shown to play an important role in tumor angiogenesis. The purpose of this study was to determine whether monocyte recruitment, activation and differentiation mediated by monocyte chemotactic protein-1 (MCP-1) and macrophage colony stimulating factor (M-CSF) modulate the expression of the angiogenic factor, Interleukin (IL)-8. Isolated human peripheral blood monocytes secreted low basal levels of IL-8. Incubation of monocytes with M-CSF or MCP-1 resulted in an up-regulation of IL-8 mRNA and protein expression. The differential expression of IL-8 by monocytes following MCP-1 and M-CSF treatments involved activation of the NFkB transcription factor. Further activation with lipopolysaccharide (LPS) caused an increase in IL-8 secretion in monocytes but not in monocyte-derived macrophages (MDM). MDM-conditioned media significantly up-regulated IL-8 expression in human malignant melanoma cells in vitro. In summary, we demonstrated that MCP-1 and M-CSF, critical for monocyte recruitment, activation and differentiation, differentially regulate IL-8 expression and may play an important role in monocyte/macrophage-mediated tumor angiogenesis.

Cell Differentiation↗

Homeodomain and winged-helix transcription factors recruit activated Smads to distinct promoter elements via a common Smad interaction motif.

We have investigated the regulation of the activin-inducible distal element (DE) of the Xenopus goosecoid promoter. The results show that paired-like homeodomain transcription factors of the Mix family, Mixer and Milk, but not Mix.1, mediate activin/TGF-beta-induced transcription through the DE by interacting with the effector domain of Smad2, thereby recruiting active Smad2/Smad4 complexes to the Mixer/Milk-binding site. We identify a short motif in the carboxyl termini of Mixer and Milk, which is demonstrated to be both necessary and sufficient for interaction with the effector domain of Smad2 and is required for mediating activin/TGF-beta-induced transcription. This motif is not confined to these homeodomain proteins, but is also present in the Smad2-interacting winged-helix proteins Xenopus Fast-1, human Fast-1, and mouse Fast-2. We demonstrate directly that transcription factors of different DNA-binding specificity recruit activated Smads to distinct promoter elements via a common mechanism. These observations, together with the temporal and spatial expression patterns of Mixer and Milk, lead us to propose a model for mesoendoderm formation in Xenopus in which these homeodomain transcription factor/Smad complexes play a role in initiating and maintaining transcription of target genes in response to endogenous activin-like signals.

Activins↗

Monocyte-derived recruiting activity: kinetics of production and effects of endotoxin.

Cultured monocytes release a factor, monocyte-derived recruiting activity (MRA), which stimulates fibroblasts, endothelial cells, and T lymphocytes to produce colony-stimulating activity (CSA). We studied the kinetics of MRA production using a technique in which MRA levels were measured in a two stage bioassay. We used umbilical vein endothelial cells as the MRA-responsive (CSA-producing) cells, and normal colony-forming unit granulocyte-macrophage (CFU-GM)-enriched bone marrow cells (T lymphocyte- and monocyte-depleted, low density bone marrow cells) as the CSA-responsive cells. MRA stimulated a 30-fold increase in CSA production by endothelial cells. MRA production was detected in supernatants from as few as 10(3) monocytes per milliliter, required the presence of fetal calf serum, and was inhibited by cycloheximide (10 to 100 micrograms/mL) and puromycin (10 to 50 micrograms/mL). Production was detectable after 24 hours of monocyte incubation, was maintained for three days, and fell to undetectable levels by seven days. With the addition of bacterial endotoxin (lipopolysaccharide [LPS]) (50 micrograms per 10(6) cells), MRA was detectable after only three hours of incubation, and levels peaked at 24 hours. Further, maximum MRA levels in the supernatants of LPS-stimulated monocytes were up to ten times greater than peak levels in the supernatants of unstimulated monocytes. Endotoxin augmented monocyte production of MRA to a greater extent than it did CSA production, indicating that the stimulation of CSA production by endotoxin may be at least partly indirect. The responsiveness of MRA production to endotoxin in vitro is consistent with the notion that MRA may be a biologically relevant regulator of CSA production by cells of the hematopoietic microenvironment.

Colony-Stimulating Factors↗

Toward synthetic transcription activators: recruitment of transcription factors to DNA by a PNA-peptide chimera.

A PNA-peptide chimera designed to mimic the biochemical function of transcription activators has been synthesized and characterized. The bis-PNA segment binds specifically to a DNA site while the 20-residue peptide is capable of binding to the transcription factors Gal11 and Gal80. The PNA-peptide chimera thus mimics one of the central functions of a native transcription activator, recruitment of transcription factors to a specific DNA site.

DNA↗

Comparing participants and nonparticipants in a smoking cessation trial: selection factors associated with general practitioner recruitment activity.

We studied the relationship between smokers' sociodemographic characteristics, their smoking habit, health status, and the probability of their having been approached for recruitment in the smoking cessation trial performed in Turin, Italy, with the aim of gathering information on the role of selection criteria adopted by general practitioners (GPs) in offering anti-smoking counseling. The 965 smokers who were offered participation in the trial were matched to a sample of eligible smokers (n = 277), selected from the rosters of the 42 GPs collaborating in the trial, who had not been invited to participate. The probability of being offered enrollment, estimated through a multiple conditional logistic regression model, assuming the GP as the matching variable, was significantly increased for intermediate (10-19 cigarettes per day: odds ratio [OR] = 4.13; 95% confidence interval [CI]: 2.63-6.47) and heavy (20 cigarettes per day or more: OR = 10.12; 95% CI: 6.51-15.75) smokers, for smokers diagnosed with chronic cardiovascular (OR = 2.06; 95% CI: 1.19-3.58), or respiratory (OR = 2.50; 95% CI: 1.40-4.48) diseases, and for smokers mentioning an intermediate number (2-4) of past quit attempts (OR = 3.70; 95% CI: 2.18-6.28). General Practitioners focused their recruitment activity on higer-risk smokers or smokers who had tried to quit, to offer more clues for intervention. Assessing the potential public health benefit of preventive interventions requires a more systematic evaluation of the generalizability of the reported findings.

Adult↗

Migration and cell recruiting activity of specifically sensitized lymphocytes in sponge matrix allografts.

The migration of indium-III-labeled specifically sensitized lymphocytes (SSLs) and unsensitized spleen lymphocytes (ULs) into sponge matrix allografts was studied in irradiated mice. Intravenously injected SSLs were preferentially recruited to the graft bearing the sensitizing alloantigen. High numbers of these SSLs, however, were attracted regardless of their immunological specificity to a third-party graft, when cells sensitized against the third-party antigen were given simultaneously. When SSLs were injected locally into a specific and third-party graft, i.v. injected ULs also homed preferentially to the specific graft. Prior treatment of SSLs with anti-theta serum and complement abrogated their cell recruiting capacity. The percentage of injected lymphocytes recruited to the specific allograft during the first 36 hr increased with the number of SSLs injected. The duration of augmented lymphocyte recruitment, however, was inversely related to the number of SSLs injected into the graft. Furthermore, there is some evidence that SSLs which have been recruited to an allograft migrate to a second site of antigen challenge and initiate there a high lymphocyte recruitment. These results suggest that increased lymphocyte recruitment to an allograft is initiated by an immunologically specific interaction between SSLs and alloantigen. The cells, however, which are preferentially recruited to an allograft, comprise small unsensitized lymphocytes and SSLs regardless of their immunological specificity. Lymphocytes with cell recruiting activity are T cells and appear to be very mobile in vivo. The mechanism described might have an important amplifying effect on allograft rejection.

Animals↗

Activator recruitment by the general transcription machinery: X-ray structural analysis of the Oct-1 POU domain/human U1 octamer/SNAP190 peptide ternary complex.

Transcriptional activation of the human U1 snRNA genes is dependent on a noncanonical octamer element contained within an upstream enhancer. The U1 octamer only weakly recruits the Oct-1 POU domain, although recruitment is stimulated by a peptide containing the Oct-1-binding domain of SNAP190. Structural analysis of the Oct-1 POU domain/U1 octamer/SNAP190 peptide complex revealed that SNAP190 makes extensive protein contacts with the Oct-1 POU-specific domain and with the DNA phosphate backbone within the enhancer. Although SNAP190 and OCA-B both interact with the Oct-1 POU domain through the same Oct-1 interface, a single nucleotide within the U1 octamer ablates OCA-B recruitment without compromising activator recruitment by SNAP190.

DNA-Binding Proteins↗

The developing rat lung fibroblast and alveolar type II cell actively recruit surfactant phospholipid substrate.

Timely, adequate production of pulmonary surfactant is critical for survival at birth. This process is dependent on both maternal nutrition and glucocorticoids. Fetal rat lung lipofibroblast triglyceride accumulation is saturable, temperature-dependent and stimulated by glucocorticoids and cyclic AMP in primary cell culture. Spontaneous triglyceride uptake by fibroblasts increases ninefold between 17 and 21 days (= term) gestation and is stimulated 30-80% by exogenous glucocorticoid treatment. Coculture of Type II cells with fibroblasts preloaded with 3H-trioleate and increasing amounts of triglyceride results in a concomitant increase in saturated phosphatidylcholine (SPC) synthesized by Type II cells. Dexamethasone stimulates mobilization of fibroblast triglyceride incorporation into Type II cell-SPC by 36-40%. The hormonally regulated uptake and mobilization of triglyceride suggest active recruitment of surfactant phospholipid substrate by both alveolar connective tissue and epithelial cells.

Animals↗

The AF-1 domain of the orphan nuclear receptor NOR-1 mediates trans-activation, coactivator recruitment, and activation by the purine anti-metabolite 6-mercaptopurine.

NOR-1/NR4A3 is an "orphan member" of the nuclear hormone receptor superfamily. NOR-1 and its close relatives Nurr1 and Nur77 are members of the NR4A subgroup of nuclear receptors. Members of the NR4A subgroup are induced through multiple signal transduction pathways. They have been implicated in cell proliferation, differentiation, T-cell apoptosis, chondrosarcomas, neurological disorders, inflammation, and atherogenesis. However, the mechanism of transcriptional activation, coactivator recruitment, and agonist-mediated activation remain obscure. Hence, we examined the molecular basis of NOR-1-mediated activation. We observed that NOR-1 trans-activates gene expression in a cell- and target-specific manner; moreover, it operates in an activation function (AF)-1-dependent manner. The N-terminal AF-1 domain delimited to between amino acids 1 and 112, preferentially recruits the steroid receptor coactivator (SRC). Furthermore, SRC-2 modulates the activity of the AF-1 domain but not the C-terminal ligand binding domain (LBD). Homology modeling indicated that the NOR-1 LBD was substantially different from that of hRORbeta, a closely related AF-2-dependent receptor. In particular, the hydrophobic cleft characteristic of nuclear receptors was replaced with a very hydrophilic surface with a distinct topology. This observation may account for the inability of this nuclear receptor LBD to efficiently mediate cofactor recruitment and transcriptional activation. In contrast, the N-terminal AF-1 is necessary for cofactor recruitment and can independently conscript coactivators. Finally, we demonstrate that the purine anti-metabolite 6-mercaptopurine, a widely used antineoplastic and anti-inflammatory drug, activates NOR-1 in an AF-1-dependent manner. Additional 6-mercaptopurine analogs all efficiently activated NOR-1, suggesting that the signaling pathways that modulate proliferation via inhibition of de novo purine and/or nucleic acid biosynthesis are involved in the regulation NR4A activity. We hypothesize that the NR4A subgroup mediates the genotoxic stress response and suggest that this subgroup may function as sensors that respond to genotoxicity.

Animals↗

Molecular determinants of the balance between co-repressor and co-activator recruitment to the retinoic acid receptor.

The repressive and activating states of nuclear hormone receptors are achieved through the recruitment of cofactor proteins. The binding of co-repressors and co-activators is believed to be mutually exclusive and principally regulated by ligand binding. To understand the molecular determinants of the switch induced by ligand in the retinoic acid receptor and in particular the intrinsic role of the ligand binding domain (LBD) in cofactor binding and release, we carried out extensive mutational analysis of surface residues of the LBD. As seen previously we found that co-repressor and co-activator molecules bind to overlapping docking sites on the surface of the retinoic acid receptor alpha LBD. Perturbation of this surface impaired both co-activator and co-repressor association resulting in a transcriptionally inert receptor. Unexpectedly mutation of two residues, Trp-225 and Ala-392, which lie outside the docking site, had opposite effects on co-activator and co-repressor binding. W225A was a constitutive repressor that failed to bind co-activator and exhibited an increased, and ligand-insensitive, interaction with co-repressor. A392R, on the other hand, had reduced affinity for co-repressors and increased affinity for co-activators and behaved as a constitutive, but still ligand-inducible, activator. Analysis of known structures showed that these mutations lie in the proximity of helix 12 (H12), and their effects are likely to be the result of perturbations in the behavior of H12. These data suggest that residues in the close vicinity of H12 regulate cofactor affinity and determine the basal activity of receptors.

Alanine↗

Recruitment, activation and retention of caspases-9 and -3 by Apaf-1 apoptosome and associated XIAP complexes.

During apoptosis, release of cytochrome c initiates dATP-dependent oligomerization of Apaf-1 and formation of the apoptosome. In a cell-free system, we have addressed the order in which apical and effector caspases, caspases-9 and -3, respectively, are recruited to, activated and retained within the apoptosome. We propose a multi-step process, whereby catalytically active processed or unprocessed caspase-9 initially binds the Apaf-1 apoptosome in cytochrome c/dATP-activated lysates and consequently recruits caspase-3 via an interaction between the active site cysteine (C287) in caspase-9 and a critical aspartate (D175) in caspase-3. We demonstrate that XIAP, an inhibitor-of-apoptosis protein, is normally present in high molecular weight complexes in unactivated cell lysates, but directly interacts with the apoptosome in cytochrome c/dATP-activated lysates. XIAP associates with oligomerized Apaf-1 and/or processed caspase-9 and influences the activation of caspase-3, but also binds activated caspase-3 produced within the apoptosome and sequesters it within the complex. Thus, XIAP may regulate cell death by inhibiting the activation of caspase-3 within the apoptosome and by preventing release of active caspase-3 from the complex.

Apoptosis↗

HIV Gag mimics the Tsg101-recruiting activity of the human Hrs protein.

The HIV-1 Gag protein recruits the cellular factor Tsg101 to facilitate the final stages of virus budding. A conserved P(S/T)AP tetrapeptide motif within Gag (the "late domain") binds directly to the NH2-terminal ubiquitin E2 variant (UEV) domain of Tsg101. In the cell, Tsg101 is required for biogenesis of vesicles that bud into the lumen of late endosomal compartments called multivesicular bodies (MVBs). However, the mechanism by which Tsg101 is recruited from the cytoplasm onto the endosomal membrane has not been known. Now, we report that Tsg101 binds the COOH-terminal region of the endosomal protein hepatocyte growth factor-regulated tyrosine kinase substrate (Hrs; residues 222-777). This interaction is mediated, in part, by binding of the Tsg101 UEV domain to the Hrs 348PSAP351 motif. Importantly, Hrs222-777 can recruit Tsg101 and rescue the budding of virus-like Gag particles that are missing native late domains. These observations indicate that Hrs normally functions to recruit Tsg101 to the endosomal membrane. HIV-1 Gag apparently mimics this Hrs activity, and thereby usurps Tsg101 and other components of the MVB vesicle fission machinery to facilitate viral budding.

Cell Line↗