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Katarina Barto? Jansen Susan Lynn Baker Marcelo Carlos Sousa 《The Journal of biological chemistry》2015,290(4):2126-2136
The β-barrel assembly machinery (BAM) mediates folding and insertion of β-barrel outer membrane proteins (OMPs) into the outer membrane of Gram-negative bacteria. BAM is a five-protein complex consisting of the β-barrel OMP BamA and lipoproteins BamB, -C, -D, and -E. High resolution structures of all the individual BAM subunits and a BamD-BamC complex have been determined. However, the overall complex architecture remains elusive. BamA is the central component of BAM and consists of a membrane-embedded β-barrel and a periplasmic domain with five polypeptide translocation-associated (POTRA) motifs thought to interact with the accessory lipoproteins. Here we report the crystal structure of a fusion between BamB and a POTRA3–5 fragment of BamA. Extended loops 13 and 17 protruding from one end of the BamB β-propeller contact the face of the POTRA3 β-sheet in BamA. The interface is stabilized by several hydrophobic contacts, a network of hydrogen bonds, and a cation-π interaction between BamA Tyr-255 and BamB Arg-195. Disruption of BamA-BamB binding by BamA Y255A and probing of the interface by disulfide bond cross-linking validate the physiological relevance of the observed interface. Furthermore, the structure is consistent with previously published mutagenesis studies. The periplasmic five-POTRA domain of BamA is flexible in solution due to hinge motions in the POTRA2–3 linker. Modeling BamB in complex with full-length BamA shows BamB binding at the POTRA2–3 hinge, suggesting a role in modulation of BamA flexibility and the conformational changes associated with OMP folding and insertion. 相似文献
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In humans, thromboxane (TX) A2 signals through the TPα and TPβ isoforms of its G-protein coupled TXA2 receptor (TP) to mediate a host of (patho)physiologic responses. Herein, angio-associated migratory cell protein (AAMP) was identified as a novel interacting partner of both TPα and TPβ through an interaction dependent on common (residues 312-328) and unique (residues 366-392 of TPβ) sequences within their carboxyl-terminal (C)-tail domains. While the interaction was constitutive in mammalian cells, agonist-stimulation of TPα/TPβ led to a transient dissociation of AAMP from immune complexes which coincided with a transient redistribution of AAMP from its localization in an intracellular fibrous network. Although the GTPase RhoA is a downstream effector of both AAMP and the TPs, AAMP did not influence TP-mediated RhoA or vice versa. Small interfering RNA (siRNA)-mediated disruption of AAMP expression decreased migration of primary human coronary artery smooth muscle cells (1° hCoASMCs). Moreover, siRNA-disruption of AAMP significantly impaired 1° hCoASMC migration in the presence of the TXA2 mimetic U46619 but did not affect VEGF-mediated cell migration. Given their roles within the vasculature, the identification of a specific interaction between TPα/TPβ and AAMP is likely to have substantial functional implications for vascular pathologies in which they are both implicated. 相似文献
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Roser Tolr�� Katarina Vogel-Miku? Roghieh Hajiboland Peter Kump Paula Pongrac Burkhard Kaulich Alessandra Gianoncelli Vladimir Babin Juan Barcel�� Marjana Regvar Charlotte Poschenrieder 《Journal of plant research》2011,124(1):165-172
Information on localization of Al in tea leaf tissues is required in order to better understand Al tolerance mechanism in this Al-accumulating plant species. Here, we have used low-energy X-ray fluorescence spectro-microscopy (LEXRF) to study localization of Al and other low Z-elements, namely C, O, Mg, Si and P, in fully developed leaves of the tea plant [Camellia sinensis (L.) O. Kuntze]. Plants were grown from seeds for 3?months in a hydroponic solution, and then exposed to 200?μM AlCl3 for 2?weeks. Epidermal-mesophyll and xylem phloem regions of 20?μm thick cryo-fixed freeze-dried tea-leaf cross-sections were raster scanned with 1.7 and 2.2?keV excitation energies to reach the Al–K and P–K absorption edges. Al was mainly localized in the cell walls of the leaf epidermal cells, while almost no Al signal was obtained from the leaf symplast. The results suggest that the retention of Al in epidermal leaf apoplast represent the main tolerance mechanism to Al in tea plants. In addition LEXRF proved to be a powerful tool for localization of Al in plant tissues, which can help in our understanding of the processes of Al uptake, transport and tolerance in plants. 相似文献
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Tja?a Tolar Stefanie Jacomet Anton Velu??ek Katarina ?ufar 《Vegetation History and Archaeobotany》2011,20(3):207-222
We present the results of a plant macroremain study of the late Neolithic lakeshore settlement Stare gmajne (SG) at Ljubljansko
barje, Slovenia, with cultural horizons that ended around 3330 and 3110 cal. b.c., as obtained by dendrochronological and radiocarbon dating of the most frequent construction timbers of Quercus sp. (oak) and Fraxinus sp. (ash). Fourteen systematically taken samples were investigated, using standard methods for studying waterlogged plant
remains, which had been developed during lake dwelling research north of the Alps. Most of the remains were preserved in a
waterlogged state, and we identified a total of 93 taxa. The most important cultivated plants were Triticum dicoccum (emmer), Hordeum vulgare (six-rowed naked barley), T. monococcum (einkorn), Linum usitatissimum (flax) and Papaver somniferum (opium poppy). The numerous possibly gathered plants also included Trapa natans (water chestnut) and Vitis vinifera ssp. sylvestris (wild grapevine). Chenopodium album (goosefoot) and Brassica rapa (turnip) with seeds/fruits rich in oil and starch were probably gathered as well. Comparisons of the Stare gmajne results
with contemporary north Alpine sites (NA) showed, among other things, that Triticum durum/turgidum (tetraploid naked wheat), frequent at NA, was not found at SG. Trapa natans (water chestnut) was rare and Vitis (grapevine) was not found at NA. The observed differences in the wild plant spectra may have ecological causes, for example
a warmer climate south of the Alps, but differences in cultivar spectra are more likely for cultural-historical reasons. 相似文献
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Imramovsky A Pesko M Ferriz JM Kralova K Vinsova J Jampilek J 《Bioorganic & medicinal chemistry letters》2011,21(15):4564-4567
A series of photosynthetic electron transport (PET) inhibitors from the group of salicylanilide alkylcarbamates was investigated. The compounds were analyzed using RP-HPLC to determine lipophilicity, and their PET inhibition was determined in spinach (Spinacia oleracea L.) chloroplasts. The site of action of the studied compounds is situated at the donor site of photosystem 2 (PS 2). Compounds substituted by chlorine in C′-3 and C′-4 of the aniline ring and the optimal length of the alkyl chain pentyl-heptyl in the carbamate moiety provided the most active PET inhibitors (IC50 inhibition <10 μmol/L). Disubstitution in C′-3,4 by chlorine caused significant PET inhibiting activity decrease. Nevertheless, for all three series of C′-3, C′-4, C′-3,4 compounds, the dependence of PET activity on lipophilicity showed to be quasi-parabolic. 相似文献