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91.
Burr Medic (Medicago polymorpha) is awidespread, polymorphic annual legume of Mediterranean origin, and as aself-reseeding, highly effective nitrogen fixer it has important value invarious dryland farming systems. In central Chile, it is naturalized along a1000 km long environmental gradient, from an arid zone(29°–31° S) to a perhumid one(37°–38°24' S). Comparative and experimental studiesof its ecotypic differentiation patterns along this gradient should be usefulinelucidating the evolutionary forces at work along environmental gradients, andalso for efforts to select annual legumes for pastures and fallow fieldimprovement in mediterranean climate areas. In this first paper of atwo-part series, we present results of two common-environmentexperiments conducted at a subhumid site in central Chile to compare vegetativeand reproductive traits in 69 populations of Burr Medic collected in 1988 and1994. Multivariate analyses based on 11 phenological and agronomic characters,including phenology and biomass accumulation, winter vigour and degree ofhard-seededness, showed that three principal components (PCs)explained nearly 70% of total variability, in both collections. For thelarger collection (1988), the diagram of dispersion for the first twoPCs – phenology, winter vigour and above-ground biomass –provided good discrimination between accessions from arid-semiarid andhumid-perhumid mediterranean zones. Onset of flowering was positivelycorrelated with both latitude and longitude, as well as mean annualprecipitation/potential evapotranspiration (PP/ETP) ofcollecting site; days from first flower to pod ripening was negativelycorrelated with PP/ETP. In contrast to reports from Syria and Sardinia, noclear trends in Burr Medic seed or pod-related traits was found along theChilean gradient, apart from the concentration of spiny pod accessions in thesouthern, more mesic end of the gradient. Winter vigour (according to asemi-quantitative analysis of growth) was greater in accessions fromthe warmer, arid and semiarid zones than in those from cooler, subhumid tohumidones. Both winter vigour and harvest index were negatively correlated with daysto first flower. Applied and evolutionary aspects of the results are brieflydiscussed. 相似文献
92.
Surfactant protein A (SP-A) is known to cause bacterial permeabilization. The aim of this work was to gain insight into the mechanism by which SP-A induces permeabilization of rough lipopolysaccharide (Re-LPS) membranes. In the presence of calcium, large interconnected aggregates of fluorescently labeled TR-SP-A were observed on the surface of Re-LPS films by epifluorescence microscopy. Using Re-LPS monolayer relaxation experiments at constant surface pressure, we demonstrated that SP-A induced Re-LPS molecular loss by promoting the formation of three-dimensional lipid-protein aggregates in Re-LPS membranes. This resulted in decreased van der Waals interactions between Re-LPS acyl chains, as determined by differential scanning calorimetry, which rendered the membrane leaky. We also showed that the coexistence of gel and fluid lipid phases within the Re-LPS membrane conferred susceptibility to SP-A-mediated permeabilization. Taken together, our results seem to indicate that the calcium-dependent permeabilization of Re-LPS membranes by SP-A is related to the extraction of LPS molecules from the membrane due to the formation of calcium-mediated protein aggregates that contain LPS. 相似文献
93.
Sánchez-Magraner L Viguera AR García-Pacios M Garcillán MP Arrondo JL de la Cruz F Goñi FM Ostolaza H 《The Journal of biological chemistry》2007,282(16):11827-11835
alpha-Hemolysin (HlyA) from Escherichia coli is a protein toxin (1024 amino acids) that targets eukaryotic cell membranes, causing loss of the permeability barrier. HlyA consists of two main regions, an N-terminal domain rich in amphipathic helices, and a C-terminal Ca(2+)-binding domain containing a Gly- and Asp-rich nonapeptide repeated in tandem 11-17 times. The latter is called the RTX domain and gives its name to the RTX protein family. It had been commonly assumed that membrane interaction occurred mainly if not exclusively through the amphipathic helix domain. However, we have cloned and expressed the C-terminal region of HlyA, containing the RTX domain plus a few stabilizing sequences, and found that it is a potent surface-active molecule. The isolated domain binds Ca(2+) with about the same affinity (apparent K(0.5) approximately 150 microM) as the parent protein HlyA, and Ca(2+) binding induces in turn a more compact folding with an increased proportion of beta-sheet structure. Both with and without Ca(2+) the C-terminal region of HlyA can interact with lipid monolayers spread at an air-water interface. However, the C-terminal domain by itself is devoid of membrane lytic properties. The present results can be interpreted in the light of our previous studies that involved in receptor binding a peptide in the C-terminal region of HlyA. We had also shown experimentally the distinction between reversible membrane adsorption and irreversible lytic insertion of the toxin. In this context, the present data allow us to propose that both major domains of HlyA are directly involved in membrane-toxin interaction, the nonapeptide repeat, calcium-binding RTX domain being responsible for the early stages of HlyA docking to the target membrane. 相似文献
94.
Hasegawa M Fujimoto Y Lucas PC Nakano H Fukase K Núñez G Inohara N 《The EMBO journal》2008,27(2):373-383
Nod1 and Nod2 are intracellular proteins that are involved in host recognition of specific bacterial molecules and are genetically associated with several inflammatory diseases. Nod1 and Nod2 stimulation activates NF-kappaB through RICK, a caspase-recruitment domain-containing kinase. However, the mechanism by which RICK activates NF-kappaB in response to Nod1 and Nod2 stimulation is unknown. Here we show that RICK is conjugated with lysine-63-linked polyubiquitin chains at lysine 209 (K209) located in its kinase domain upon Nod1 or Nod2 stimulation and by induced oligomerization of RICK. Polyubiquitination of RICK at K209 was essential for RICK-mediated IKK activation and cytokine/chemokine secretion. However, RICK polyubiquitination did not require the kinase activity of RICK or alter the interaction of RICK with NEMO, a regulatory subunit of IkappaB kinase (IKK). Instead, polyubiquitination of RICK was found to mediate the recruitment of TAK1, a kinase that was found to be essential for Nod1-induced signaling. Thus, RICK polyubiquitination links TAK1 to IKK complexes, a critical step in Nod1/Nod2-mediated NF-kappaB activation. 相似文献
95.
R. Peñalver B. Vicedo C. I. Salcedo M. M. López 《Biocontrol Science and Technology》1994,4(3):259-267
Agrobacterium radiobacter strains K84, K1026 and K84 Agr‐ produced in vitro an antibiotic‐like substance (ALS 84), different from agrocin 84 and observed in mannitol‐glutamate medium. Twenty five out of 39 A. tumefaciens strains of biovars 1, 2 and 3 were sensitive to ALS 84 regardless of their sensitivity to agrocin 84. Sensitivity in A. tumefaciens strain C58 was not encoded by the Ti‐plasmid. Most isolates tested of Erwinia carotovora subsp. carotovora E. carotovora subsp. atroseptica, Pseudomonas corrugata P. cichorii and unidentified isolates from galls were also sensitive to this substance. ALS 84 was not affected by the proteases studied, nor by treatment at 62°C for 30 min and had a bacteriostatic effect. The production of ALS 84 might play a role in the complex mechanism of biological control of crown gall, especially in strains resistant to agrocin 84 and sensitive to ALS 84, and by the creation of an ecological niche favourable to A. radiobacter strains K84, K1026 or K84 Agr‐. 相似文献
96.
97.
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99.
Lapeña David Olsen Pernille M. Arntzen Magnus Ø. Kosa Gergely Passoth Volkmar Eijsink Vincent G. H. Horn Svein J. 《Bioprocess and biosystems engineering》2020,43(4):723-736
Bioprocess and Biosystems Engineering - The production of microbial protein in the form of yeast grown on lignocellulosic sugars and nitrogen-rich industrial residues is an attractive approach for... 相似文献
100.
Sot B Galán A Valpuesta JM Bertrand S Muga A 《The Journal of biological chemistry》2002,277(37):34024-34029
The chaperonin GroEL consists of a double-ring structure made of identical subunits and displays unusual allosteric properties caused by the interaction between its constituent subunits. Cooperative binding of ATP to a protein ring allows binding of GroES to that ring, and at the same time negative inter-ring cooperativity discharges the ligands from the opposite ring, thus driving the protein-folding cycle. Biochemical and electron microscopy analysis of wild type GroEL, a single-ring mutant (SR1), and two mutants with one inter-ring salt bridge of the chaperonin disrupted (E461K and E434K) indicate that these ion pairs form part of the interactions that allow the inter-ring allosteric signal to be transmitted. The wild type-like activities of the ion pair mutants at 25 degrees C are in contrast with their lack of inter-ring communication and folding activity at physiological temperatures. These salt bridges stabilize the inter-ring interface and maintain the inter-ring spacing so that functional communication between protein heptamers takes place. The characterization of GroEL hybrids containing different amounts of wild type and mutant subunits also indicates that as the number of inter-ring salt bridges increases the functional properties of the hybrids recover. Taken together, these results strongly suggest that inter-ring salt bridges form a stabilizing ring-shaped, ionic zipper that ensures inter-ring communication at the contact sites and therefore a functional protein-folding cycle. Furthermore, they regulate the chaperonin thermostat, allowing GroEL to distinguish physiological (37 degrees C) from stress temperatures (42 degrees C). 相似文献