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141.
Ecdysone and ecdysterone induce the synthesis of RNA in fat body cells and isolated nuclei from Calliphora larvae. The inducibility of RNA synthesis is correlated to specific development stages. The fat body cells and the isolated nuclei differ in their response to the two ecdysteroids, ecdysterone giving rise to better responses. The greatest part of the induced RNA represents ribosomal RNA but also new species of nonribosomal RNA are transcribed under the influence of ecdysterone. 相似文献
142.
Reyes JL Campos F Wei H Arora R Yang Y Karlson DT Covarrubias AA 《Plant, cell & environment》2008,31(12):1781-1790
In plants, Late Embryogenesis Abundant (LEA) proteins typically accumulate in response to low water availability conditions imposed during development or by the environment. Analogous proteins in other organisms are induced when exposed to stress conditions. Most of this diverse set of proteins can be grouped according to properties such as high hydrophilicity and high content of glycine or other small amino acids in what we have termed hydrophilins. Previously, we showed that hydrophilins protect enzyme activities in vitro from low water availability effects. Here, we demonstrate that hydrophilins can also protect enzyme activities from the adverse effects induced by freeze-thaw cycles in vitro. We monitored conformational changes induced by freeze-thaw on the enzyme lactate dehydrogenase (LDH) using the fluorophore 1-anilinonaphthalene-8-sulfonate (ANS). Hydrophilin addition prevents enzyme inactivation and this effect is reflected in changes in the ANS-fluorescence levels determined for LDH. We further show that for selected plant hydrophilins, removal of certain conserved domains affects their protecting capabilities. Thus, we propose that hydrophilins, and in particular specific protein domains, have a role in protecting cell components from the adverse effects caused by low water availability such as those present during freezing conditions by preventing deleterious changes in protein secondary and tertiary structure. 相似文献
143.
The benzenoid ester, methylbenzoate is one of the most abundant scent compounds detected in the majority of snapdragon (Antirrhinum majus) varieties. It is produced in upper and lower lobes of petals by enzymatic methylation of benzoic acid in the reaction catalyzed by S-adenosyl-L-methionine:benzoic acid carboxyl methyltransferase (BAMT). To identify the location of methylbenzoate biosynthesis, we conducted an extensive immunolocalization study by light and electron microscopy at cellular and subcellular levels using antibodies against BAMT protein. BAMT was immunolocalized predominantly in the conical cells of the inner epidermal layer and, to a much lesser extent, in the cells of the outer epidermis of snapdragon flower petal lobes. It was also located in the inner epidermis of the corolla tube with little BAMT protein detected in the outer epidermis and in the yellow hairs within the tube on the bee's way to the nectar. These results strongly suggest that scent biosynthetic genes are expressed almost exclusively in the epidermal cells of floral organs. Immunogold labeling studies reveal that BAMT is a cytosolic enzyme, suggesting cytosolic location of methylbenzoate biosynthesis. The concentration of scent production on flower surfaces that face the pollinators during landing may increase pollination efficiency and also help to minimize the biosynthetic cost of advertising for pollinators. 相似文献
144.
Godhe Anna; Noren Fredrik; Kuylenstierna Mats; Ekberg Christian; Karlson Bengt 《Journal of plankton research》2001,23(9):923-938
In order to study the relationship between planktonic dinoflagellates,cyst production and environmental factors, a sediment trap studywas conducted in the Gullmar Fjord, Swedish west coast, during21 days in MayJune 1998. Five locations for sedimenttraps were randomly selected every third day. The traps weremoored at the five locations and moved to new locations after3 days. At every location, a CTD depth profile was obtainedand water samples were collected for plankton, chlorophyll aand nutrient analysis. Meteorological and hydrographic datafor the period were obtained from continuous monitoring. Threedinoflagellate species, which have not previously been recordedfrom the Kattegat or the Skagerrak (Scrippsiella crystallina,Scrippsiella lachrymosa and Scrippsiella trifida), were encounteredduring the analysis of cysts from the sediment traps. The abundanceof the different species in the motile form encountered in thewater column and cyst form encountered in the sediment trapsvaried greatly. The discrepancy between the number and speciesencountered in traps and water samples is discussed. No density-dependentrelationship between the abundance of planktonic cyst-formingdinoflagellates and the number of cysts recovered could be observed.A multiple regression showed that the variation in cyst yieldfrom the traps for the most abundant species was correlatedwith water surface temperature, ambient light radiation andthe depth of the halocline. The nutrient concentrations (NH4+,NO2, NO3 and PO43), which are known toplay a crucial role in induction of sexuality and cyst formationunder laboratory conditions, correlated poorly with the numberof dinoflagellate cysts encountered in the traps. 相似文献
145.
Rheumatoid arthritis is a systemic autoimmune disease characterized by chronic, destructive, debilitating arthritis. Its etiology
is unknown; it is presumed that environmental factors trigger development in the genetically predisposed. Epstein–Barr virus,
a nearly ubiquitous virus in the human population, has generated great interest as a potential trigger. This virus stimulates
polyclonal lymphocyte expansion and persists within B lymphocytes for the host's life, inhibited from reactivating by the
immune response. In latent and replicating forms, it has immunomodulating actions that could play a role in the development
of this autoimmune disease. The evidence linking Epstein–Barr virus and rheumatoid arthritis is reviewed. 相似文献
146.
Isolation and taxonomic affiliation of N-heterocyclic aromatic hydrocarbon-transforming bacteria 总被引:4,自引:0,他引:4
Willumsen PA Johansen JE Karlson U Hansen BM 《Applied microbiology and biotechnology》2005,67(3):420-428
The azaarenes (nitrogen-containing heterocyclic aromatic hydrocarbons) are products of incomplete combustion processes and thus are widely distributed with tar and oil products in the environment. Despite their adverse organoleptic, toxic, and carcinogenic characteristics, the biodegradability and fate of multi-ring azaarenes have received little attention. This work demonstrates the presence of genetically diverse azaarene-degrading bacteria in coal tar-contaminated soils. Thirty-eight bacterial strains able to transform the three-ring azaarenes, 5,6- and 7,8-benzoquinoline, phenanthridine, phenazine, or acridine, were isolated. Only seven of these strains grew in liquid medium on the specific azaarene compounds on which they were isolated using plates; and the rest transformed the azaarenes without growth. Taxonomic characterization by 16S ribosomal DNA sequencing revealed that our enrichment technique provided a diversity of 18 different azaarene-transforming bacterial species. Only a few strains were able to mineralize the homocyclic analogue, phenanthrene. Several of the isolates, e.g., Dyadobacter fermentans, Methylopila capsulata, and Agrobacterium tumefaciens, were related to genera relatively unknown with respect to the biodegradation of xenobiotic compounds. These strains can provide further information on the fate of azaarenes in the environment. 相似文献
147.
Karlson U Pejler G Tomasini-Johansson B Hellman L 《The Journal of biological chemistry》2003,278(41):39625-39631
Chymases are mast cell serine proteases with chymotrypsin-like primary substrate specificity. Amino acid sequence comparisons of alpha-chymases from different species indicated that certain rodent alpha-chymases have a restricted S1 pocket that could only accommodate small amino acids, i.e. they may, despite being classified as chymases, in fact display elastase-like substrate specificity. To explore this possibility, the alpha-chymase, rat mast cell protease 5 (rMCP-5), was produced as a proenzyme with a His6 purification tag and an enterokinase-susceptible peptide replacing the natural propeptide. After removal of the purification tag/enterokinase site by enterokinase digestion, rMCP-5 bound the serine-protease-specific inhibitor diisopropyl fluorophosphate, showing that rMCP-5 was catalytically active. The primary specificity was investigated with chromogenic substrates of the general sequence succinyl-Ala-Ala-Pro-X-p-nitroanilide, where the X was Ile, Val, Ala, Phe or Leu. The activity was highest toward substrates with Val or Ala in the P1 position, whereas low activity toward the peptide with a P1 Phe was observed, indicating that the substrate specificity of rMCP-5 indeed is elastase-like. The extended substrate specificity was examined utilizing a phage-displayed random nonapeptide library. The preferred cleavage sequence was resolved as P4-(Gly/Pro/Val), P3-(Leu/Val/Glu), P2-(Leu/Val/Thr), P1-(Val/Ala/Ile), P1'-(Xaa), and P2'-(Glu/Leu/Asp). Hence, the extended substrate specificity is similar to human chymase in most positions except for the P1 position. We conclude that the rat alpha-chymase has converted to elastase-like substrate specificity, perhaps associated with an adoption of new biological targets, separate from those of human alpha-chymase. 相似文献
148.
Activated mast cells release a variety of potent inflammatory mediators including histamine, cytokines, proteoglycans, and serine proteases. The serine proteases belong to either the chymase (chymotrypsin-like substrate specificity) or tryptase (trypsin-like specificity) family. In this report we have investigated the substrate specificity of a recently identified mast cell protease, rat mast cell protease-4 (rMCP-4). Based on structural homology, rMCP-4 is predicted to belong to the chymase family, although rMCP-4 has previously not been characterized at the protein level. rMCP-4 was expressed with an N-terminal His tag followed by an enterokinase site substituting for the native activation peptide. The enterokinase-cleaved fusion protein was labeled by diisopropyl fluorophosphate, demonstrating that it is an active serine protease. Moreover, rMCP-4 hydrolyzed MeO-Suc-Arg-Ala-Tyr-pNA, thus verifying that this protease belongs to the chymase family. rMCP-4 bound to heparin, and the enzymatic activity toward MeO-Suc-Arg-Ala-Tyr-pNA was strongly enhanced in the presence of heparin. Detailed analysis of the substrate specificity was performed using peptide phage display technique. After six rounds of amplification a consensus sequence, Leu-Val-Trp-Phe-Arg-Gly, was obtained. The corresponding peptide was synthesized, and rMCP-4 was shown to cleave only the Phe-Arg bond in this peptide. This demonstrates that rMCP-4 displays a striking preference for bulky/aromatic amino acid residues in both the P1 and P2 positions. 相似文献
149.
A predominant 24-kD dehydrin-like protein was previously found to fluctuate seasonally within red-osier dogwood (Cornus sericea L.) stems. The current study attempted to determine what environmental cues triggered the accumulation of the 24-kD protein and to assess its potential role in winter survival. Controlled photoperiod and field studies confirmed that photoperiod regulates a reduction of stem water content (SWC), freeze-tolerance enhancement and accumulation of the 24-kD protein. Diverse climatic ecotypes, which are known to respond to different critical photoperiods, displayed differential reduction of SWC and accumulation of the 24-kD protein. A time-course study confirmed that prolonged exposure to short days is essential for SWC reduction, 24-kD protein accumulation, and freeze-tolerance enhancement. Water deficit induced 24-kD protein accumulation and enhanced freeze-tolerance under long-day conditions. In all instances, freeze-tolerance enhancement and 24-kD protein accumulation was preceded by a reduction of SWC. These results are consistent with the hypothesis that C. sericea responds to decreasing photoperiod, which triggers a reduction in SWC. Reduced SWC in turn may trigger the accumulation of the 24-kD protein and a parallel increase in freeze-tolerance. 相似文献
150.
Timothy?RH?RegnaultEmail author Hutton?V?Oddy Colin?Nancarrow Nadarajah?Sriskandarajah Rex?J?Scaramuzzi 《Reproductive biology and endocrinology : RB&E》2004,2(1):64