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101.
Substance P is a neurotransmitter or modulator in both the central and peripheral nervous systems. In this work, modifications of the lysine in SP by homocysteine and an acetyl group as well as the conformational dynamics of the native and modified SP peptides and their complexes with the NK1 receptor were studied via MD simulation. It was found that modifying SP stabilizes the peptide structure, but the modified SP peptides are less likely to bind to the NK1 receptor, so the resulting complexes are less stable. The RMSD of native SP (~0.33 nm) is about twice as large as that of the modified SP peptides (~0.18 nm), while the RMSD for the receptor complexed with native SP is ~0.3 nm, and that for the receptor complexed with either of the modified peptides is ~0.35 nm, which demonstrates the high stability of the modified SP peptides as well as the receptor complexed with native SP. Such behavior was also observed in other structural analyses. The binding free energies of the native and modified SP peptides with the NK1 receptor were also compared. The ΔGbind values for the binding of homocysteinylated SP to the NK1 receptor and the binding of the acetylated SP and native SP to the NK1 receptor were ?38.89, ?64.46, and???264.52 kJ mol?1, respectively. Modification of the lysine of SP decreases the binding affinity of the peptide to the NK1 receptor. In other words, homocysteinylation or acetylation of SP leads to weaker interactions of the peptide with the NK1 receptor compared to those between native SP and NK1. We propose that this phenomenon leads to increased levels of homocysteinylated SP in plasma in many diseases such as breast cancer.
Graphical abstract Substance P (SP) is a neuropeptide which binds to the NK1 receptor. SP is of great pharmacological interest, as agonists and antagonists of SP can potentially be used to treat many chronic diseases. Therefore, in this work, the lysine (LYS) in SP was theoretically modified with a homocysteine or acetyl group to explore the effects of such a modification on the binding affinity of this peptide with the NK1 receptor and the structural dynamics of the resulting complex
  相似文献   
102.
Oil presence in soil, as a stressor, reduces phytoremediation efficiency through an increase in the plant stress ethylene. Bacterial 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase, as a plant stress ethylene reducer, was employed to increase oil phytoremediation efficiency. For this purpose, the ability of ACC deaminase-producing Pseudomonas strains to grow in oil-polluted culture media and withstand various concentrations of oil and also their ability to reduce plant stress ethylene and enhance some growth characteristics of maize and finally their effects on increasing phytoremediation efficiency of poly aromatic hydrocarbons (PAHs) in soil were investigated. Based on the results, of tested strains just P9 and P12 were able to perform oil degradation. Increasing oil concentration from 0 to 10% augmented these two strains population, 15.7% and 12.9%, respectively. The maximum increase in maize growth was observed in presence of P12 strain. Results of high-performance liquid chromatography (HPLC) revealed that PAHs phytoremediation efficiency was higher for inoculated seeds than uninoculated. The highest plant growth and PAHs removal percentage (74.9%) from oil-polluted soil was observed in maize inoculated with P12. These results indicate the significance of ACC deaminase producing bacteria in alleviation of plant stress ethylene in oil-polluted soils and increasing phytoremediation efficiency of such soils.  相似文献   
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Correlations between the in vitro biological properties of HIV strains isolated from patients and the prognosis of their disease have been reported. We developed a technique to study the phenotype of HIV strains isolated from patients. We used the P4 cell line, derived from HeLa cells, which has been transfected with receptor CD4 gene. HIV laboratory strain (HIVLAI) and peripheral blood leukocytes (PBLs) from donors infected with HIVLAI induce syncytium in P4 cell cultures in vitro. The presence of reporter gene (LacZ gene) under the control of the HIV-1 long terminal repeat (LTR) in these cells allows colorimetric visualization of syncytia in the cytoplasm using a β-galactosidase (βgal) assay in the presence of X-gal. We cocultivated 1 × 106 patient PBLs with 2 × 106 normal PHA-activated normal PBLs for 4 days in the presence of IL-2 in 24-well plates. Half of the medium was replaced twice a week and PHA-activated normal PBLs were added every 7 days. HIV-1 was isolated from cocultured PBLs of 18 patients with advanced-stage HIV infection as assessed by the production of HIV p24 detected with a commercially available HIV-1 p24 ELISA. Supernatant and 105 cells were collected twice a week from cocultured PBLs and were added to P4 cells in 96-well microtiter plates. The cultures were observed every day for 3 days and then the βgal assay was performed. We did not observe any effect with cells and supernatant from 8 patients, harvested from cultures incubated for as long as 28 days. The phenotype of these isolates was called NC (noncytopathic). In cells from 2 patients, we obtained blue multinucleated giant cells; the phenotype of these strains was called SI (syncytium inducing). In cultures from 8 other patients, we obtained the death of P4 cells without syncytium formation, and the phenotype of these strains was called CI (cell-killing inducing). In every case, the cytopathic effect of HIV-1 isolates could be detected with cocultured PBLs collected as early as day 4 of culture. Cocultured PBLs from 13 healthy controls did not alter the P4 cells. We displayed the replication of CI strains of HIV-1, but not the one of NC strains in P4 cell line. Our micromethod allowed the detection of cytopathic effects of HIV isolates. Further investigations should define the clinical applications of this method.  相似文献   
105.
Soluble forms of the two molecular species of the cell surface TNF receptors (sTNFR p55 and sTNFR p75) can reduce the activity of TNFα but they may also enhance its function by stabilizing the active TNFα oligomer. Considering the pathophysiological importance of sTNFR p75 for the regulation of the bioavailability of TNFα in the body, we determined the serum levels of sTNFR p75 and TNFα in 45 children and 28 adults with laboratory-confirmed dengue infection by using immunoassays. The serum samples were obtained from day 1 to day 15 after the onset of the disease during the 1989–1990 outbreak of dengue-3 in Tahiti, French Polynesia. The patients were clinically classified as having dengue hemorrhagic fever (DHF) and graded according to the criteria of the World Health Organization (WHO) into four grades from less severe (grade I) to severe (grade IV). The sera of both children and adult patients of all severity grades contained higher levels of sTNFR p75 than the sera of control subjects. Although high levels of TNFα were also detected in children and adults among grade I, II, III and IV patients, we found no correlation between sTNFR p75 and TNFα. We observed in adults a moderate elevation of sTNFR p75 and TNFα in sera compared with that observed in children. The raised levels of immunoreactive sTNFR p75 and TNFα in all clinical groups of dengue-infected patients strongly indicate activation of the TNFα system during dengue infection. The balance between sTNFR p75 and TNFα may be altered in dengue infection. Further investigations are needed to understand the role of sTNFR p75 and TNFα in the pathogenesis of DHF and to improve the management of dengue infection.  相似文献   
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107.
Interaction of plant roots with arbuscular mycorrhizal fungi (AMF) is a complex trait resulting in cooperative interactions among the two symbionts including bidirectional exchange of resources. To study arbuscular mycorrhizal symbiosis (AMS) trait variation in the model plant Lotus japonicus, we performed an integrated multi‐omics analysis with a focus on plant and fungal phospholipid (PL) metabolism and biological significance of lysophosphatidylcholine (LPC). Our results support the role of LPC as a bioactive compound eliciting cellular and molecular response mechanisms in Lotus. Evidence is provided for large interspecific chemical diversity of LPC species among mycorrhizae with related AMF species. Lipid, gene expression and elemental profiling emphasize the Lotus–Glomus intraradices interaction as distinct from other arbuscular mycorrhizal (AM) interactions. In G. intraradices, genes involved in fatty acid (FA) elongation and biosynthesis of unsaturated FAs were enhanced, while in Lotus, FA synthesis genes were up‐regulated during AMS. Furthermore, FAS protein localization to mitochondria suggests FA biosynthesis and elongation may also occur in AMF. Our results suggest the existence of interspecific partitioning of PL resources for generation of LPC and novel candidate bioactive PLs in the Lotus–G. intraradices symbiosis. Moreover, the data advocate research with phylogenetically diverse Glomeromycota species for a broader understanding of the molecular underpinnings of AMS.  相似文献   
108.
This study is the first to investigate the chemical composition of barks essential oil (EO), secondary metabolites and biological activities of the MeOH and infusions extracts of seeds, leaves, barks and roots of Calligonum azel Maire (Polygonaceae) harvested from Tunisian desert. The gas chromatography/mass spectrometry (GC/MS) results showed the presence of fifty‐four compounds in barks EO. The major components were: viridiflorol (14.6%), α‐eudesmol (8.65%), trans‐caryophyllene (6.72%), elemol (6.63%), β‐eudesmol (6.21%). The obtained results showed that C. azel is a very rich plant in secondary metabolites. High contents in polyphenols, flavonoids and tannins were observed in both extracts of all studied organs. Significant differences were found between both extracts of the four organs. Thus, polyphenols and tannins were more abundant in leaves infusion extract, while, flavonoids showed a high level in barks extract. The antioxidant activity data demonstrated that all extracts showed strong antioxidant and radical scavenging activities. The MeOH extracts presented potential for antibacterial and antifungal activities against all tested microorganisms. The inhibition zones diameters and minimal inhibitrice concentration values were in the range of 9 – 15 mm and 2.5 – 20 μg/ml, respectively. This study demonstrated that C. azel can be regarded as an excellent plant source for natural antimicrobial agents.  相似文献   
109.
Nonexchangeable soil K trapped between interlayers of clay minerals is an important source of K for plants grown on many soils. In this study, the ability of alfalfa, as the most important forage crop worldwide, to take up K from some micaceous minerals and to promote the transformation of micaceous minerals were investigated. Alfalfa was cultivated in pots that consisted of a mixture of Hamadan quartz sand and Amlash biotite, Hamadan muscovite and Hamadan phlogopite. Plants were irrigated with distilled water and complete or K-free nutrient solutions. After 90 days, K uptake by plants was measured by flame photometer. Also, the clay size particles in each pot were analyzed using x-ray diffraction. It was found that alfalfa was able to induce a significant release of interlayer K during cropping. The amount of K taken up by alfalfa was significantly higher for Hamadan phlogopite. X-ray diffractometry showed a strong vermiculitization of Hamadan phlogopite and Amlash biotite, but no X-ray detectable transformation of muscovite was recognized.  相似文献   
110.
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