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41.
Cultured pig aortic endothelial cells display significant changes in their nucleotide patterns after incubation with LDL-cholesterol purified from normal human plasma as determined by HPLC. Incubation at 70 mg/dl LDL-cholesterol for 24 h at 37 degrees C caused a significant decrease (P less than 0.001) in ATP from a control value of 14.0 +/- 0.4 nmol/mg protein to 6.6 +/- 0.9 nmol/mg protein (n = 4) with a concomitant increase in ADP and AMP. At higher LDL concentrations these effects were even more pronounced but still reversible. Akin to adenine nucleotides, the guanosine and uridine phosphates as determined by HPLC were changed. In contrast to LDL, HDL and VLDL were ineffectual. 相似文献
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43.
The terpene synthase gene family in Gossypium hirsutum harbors a linalool synthase GhTPS12 implicated in direct defence responses against herbivores 总被引:1,自引:0,他引:1
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44.
Michael T. Heneka Peter-A. Löschmann Marc Gleichmann Michael Weller Jörg B. Schulz Ullrich Wüllner Thomas Klockgether 《Journal of neurochemistry》1998,71(1):88-94
Abstract: Exposure of neuronal PC12 cells, differentiated by nerve growth factor, to tumor necrosis factor-α (TNF-α) and bacterial lipopolysaccharide (LPS) resulted in de novo synthesis of inducible nitric oxide synthase (iNOS) mRNA and protein with an increase up to 24 h. Brain NOS expression was unaffected. The induction of iNOS in differntiated PC12 cells was associated with cell death characterized by features of apoptosis, The NOS inhibitors N -monomethylarginine, aminoguanidine, and 2-amino-5,6-dihydro-6-methyl-4 H -1,3-thiazine HCl prevented TNF-α/LPS-induced cell death and DNA fragmentation, suggesting that the TNF-α/LPS-induced cell death is mediated by iNOS-derived NO. This hypothesis is supported by the finding that addition of l -arginine, which serves as a precursor and limiting factor of enzyme-derived NO production, potentiated TNF-α/LPS-induced loss of viability. 相似文献
45.
Wanlu Zhang Azqa Khan Jlenia Vitale Annett Neuner Kerstin Rink Christian Lüchtenborg Britta Brügger Thomas H. Sllner Elmar Schiebel 《Open biology》2021,11(11)
The integral membrane protein Apq12 is an important nuclear envelope (NE)/endoplasmic reticulum (ER) modulator that cooperates with the nuclear pore complex (NPC) biogenesis factors Brl1 and Brr6. How Apq12 executes these functions is unknown. Here, we identified a short amphipathic α-helix (AαH) in Apq12 that links the two transmembrane domains in the perinuclear space and has liposome-binding properties. Cells expressing an APQ12 (apq12-ah) version in which AαH is disrupted show NPC biogenesis and NE integrity defects, without impacting Apq12-ah topology or NE/ER localization. Overexpression of APQ12 but not apq12-ah triggers striking over-proliferation of the outer nuclear membrane (ONM)/ER and promotes accumulation of phosphatidic acid (PA) at the NE. Apq12 and Apq12-ah both associate with NPC biogenesis intermediates and removal of AαH increases both Brl1 levels and the interaction between Brl1 and Brr6. We conclude that the short amphipathic α-helix of Apq12 regulates the function of Brl1 and Brr6 and promotes PA accumulation at the NE possibly during NPC biogenesis. 相似文献
46.
47.
Dipole moments of proteins arise from helical dipoles, hydrogen bond networks and charged groups at the protein surface. High protein dipole moments were suggested to contribute to the electrostatic steering between redox partners in electron transport chains of respiration, photosynthesis and steroid biosynthesis, although so far experimental evidence for this hypothesis was missing. In order to probe this assumption, we changed the dipole moment of the electron transfer protein adrenodoxin and investigated the influence of this on protein-protein interactions and electron transfer. In bovine adrenodoxin, the [2Fe-2S] ferredoxin of the adrenal glands, a dipole moment of 803 Debye was calculated for a full-length adrenodoxin model based on the Adx(4-108) and the wild type adrenodoxin crystal structures. Large distances and asymmetric distribution of the charged residues in the molecule mainly determine the observed high value. In order to analyse the influence of the resulting inhomogeneous electric field on the biological function of this electron carrier the molecular dipole moment was systematically changed. Five recombinant adrenodoxin mutants with successively reduced dipole moment (from 600 to 200 Debye) were analysed for their redox properties, their binding affinities to the redox partner proteins and for their function during electron transfer-dependent steroid hydroxylation. None of the mutants, not even the quadruple mutant K6E/K22Q/K24Q/K98E with a dipole moment reduced by about 70% showed significant changes in the protein function as compared with the unmodified adrenodoxin demonstrating that neither the formation of the transient complex nor the biological activity of the electron transfer chain of the endocrine glands was affected. This is the first experimental evidence that the high dipole moment observed in electron transfer proteins is not involved in electrostatic steering among the proteins in the redox chain. 相似文献
48.
Gene dosage-dependent effects of bcl-2 expression on cellular survival and redox status 总被引:2,自引:0,他引:2
Seyfried J Evert BO Schwarz CS Schaupp M Schulz JB Klockgether T Wüllner U 《Free radical biology & medicine》2003,34(12):1517-1530
The human oncogene bcl-2 exerts protective functions in numerous models of apoptotic cell death and increased oxidative stress. We investigated the effects of inducible bcl-2 overexpression on cellular survival and redox status in dopaminergic rat pheochromocytoma PC 12 cells. Induction of high-level expression of bcl-2 in PC 12 cells resulted in generation of oxidative stress and cessation of growth by cell cycle arrest. Cell cycle arrest in bcl-2-overexpressing PC 12 cells was prevented by an inhibitor of extracellular signal-related kinase (ERK 1/2) activation. Protective effects of bcl-2 expression against L-DOPA neurotoxicity decreased with increasing amounts of bcl-2. Furthermore, high-level bcl-2 overexpression sensitized cells towards oxidative stress and glutathione depletion. Our data suggest that bcl-2 expression is beneficial only in a limited gene dosage range and that high-level expression of bcl-2 exerts potential deleterious effects. 相似文献
49.
The characterisation of a monoclonal antibody (mab 45) reacting with phagocytic leucocytes isolated from blood and spleen of rainbow trout (Oncorhynchus mykiss, Walbaum) is described. The surface marker labelled by this mab is expressed at relative low levels on the membrane of large, nearly nongranulated trout leucocytes, and having the typical morphology of monocytes in flow cytometry (Kfoury et al., 1999, Fish Pathology, 34, 1-6). No reaction of mab 45 with granulocytes, lymphocytes or thrombocytes was detected. In spleen and head kidney, large, polymorphonuclear leucocytes were immunostained. The mab most strongly recognised an antigen of 48 kDa prepared from trout leucocytes of different organs, but not in trout plasma. In an in vitro phagocytosis assay trout monocytes were stained with mab 45 after phagocytosis of Aeromonas salmonicida labelled with the lipophilic fluorescent cell surface linker PKH26. However, previous binding of mab 45 on trout leucocytes did not inhibit the phagocytosis of A. salmonicida particles. Using mab 45, the dynamics of monocytes in blood, spleen and peritoneal cavity could be demonstrated after intraperitoneal injection of trout with inactivated A. salmonicida. The described mab serves as a useful tool to investigate the involvement of monocytes/macrophages in immune reactions of trout to a variety of pathogens. 相似文献
50.
SNARE and regulatory proteins induce local membrane protrusions to prime docked vesicles for fast calcium‐triggered fusion
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Tanmay A M Bharat Jörg Malsam Wim J H Hagen Andrea Scheutzow Thomas H Söllner John A G Briggs 《EMBO reports》2014,15(3):308-314
Synaptic vesicles fuse with the plasma membrane in response to Ca2+ influx, thereby releasing neurotransmitters into the synaptic cleft. The protein machinery that mediates this process, consisting of soluble N‐ethylmaleimide‐sensitive factor attachment protein receptors (SNAREs) and regulatory proteins, is well known, but the mechanisms by which these proteins prime synaptic membranes for fusion are debated. In this study, we applied large‐scale, automated cryo‐electron tomography to image an in vitro system that reconstitutes synaptic fusion. Our findings suggest that upon docking and priming of vesicles for fast Ca2+‐triggered fusion, SNARE proteins act in concert with regulatory proteins to induce a local protrusion in the plasma membrane, directed towards the primed vesicle. The SNAREs and regulatory proteins thereby stabilize the membrane in a high‐energy state from which the activation energy for fusion is profoundly reduced, allowing synchronous and instantaneous fusion upon release of the complexin clamp. 相似文献