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91.
92.
Carpena X Loprasert S Mongkolsuk S Switala J Loewen PC Fita I 《Journal of molecular biology》2003,327(2):475-489
The catalase-peroxidase encoded by katG of Burkholderia pseudomallei (BpKatG) is 65% identical with KatG of Mycobacterium tuberculosis, the enzyme responsible for the activation of isoniazid as an antibiotic. The structure of a complex of BpKatG with an unidentified ligand, has been solved and refined at 1.7A resolution using X-ray synchrotron data collected from crystals flash-cooled with liquid nitrogen. The crystallographic agreement factors R and R(free) are 15.3% and 18.6%, respectively. The crystallized enzyme is a dimer with one modified heme group and one metal ion, likely sodium, per subunit. The modification on the heme group involves the covalent addition of two or three atoms, likely a perhydroxy group, to the secondary carbon atom of the vinyl group on ring I. The added group can form hydrogen bonds with two water molecules that are also in contact with the active-site residues Trp111 and His112, suggesting that the modification may have a catalytic role. The heme modification is in close proximity to an unusual covalent adduct among the side-chains of Trp111, Tyr238 and Met264. In addition, Trp111 appears to be oxidized on C(delta1) of the indole ring. The main channel, providing access of substrate hydrogen peroxide to the heme, contains a region of unassigned electron density consistent with the binding of a pyridine nucleotide-like molecule. An interior cavity, containing the sodium ion and an additional region of unassigned density, is evident adjacent to the adduct and is accessible to the outside through a second funnel-shaped channel. A large cleft in the side of the subunit is evident and may be a potential substrate-binding site with a clear pathway for electron transfer to the active-site heme group through the adduct. 相似文献
93.
García-Tuñón Ignacio Vuelta Elena Lozano Laura Herrero María Méndez Lucía Palomero-Hernandez Javier Pérez-Caro María Pérez-García Jessica González-Sarmiento Rogelio Sánchez-Martín Manuel 《Molecular biology reports》2020,47(2):1381-1391
Molecular Biology Reports - The Nomo1 gene mediates a wide range of biological processes of importance in embryonic development. Accordingly, constitutive perturbation of Nomo1 function may result... 相似文献
94.
Pablo García-Díaz David S. L. Ramsey Andrew P. Woolnough Marc Franch Gustavo A. Llorente Albert Montori Xabier Buenetxea Asier R. Larrinaga Matthieu Lasceve Alberto Álvarez José María Traverso Aitor Valdeón Ariñe Crespo Virginia Rada Enrique Ayllón Vicente Sancho J. Ignacio Lacomba José Vicente Bataller Miguel Lizana 《Biological invasions》2017,19(9):2739-2750
95.
Nikisha Carty Nadège Berson Karsten Tillack Christina Thiede Diana Scholz Karsten Kottig Yalda Sedaghat Christina Gabrysiak George Yohrling Heinz von der Kammer Andreas Ebneth Volker Mack Ignacio Munoz-Sanjuan Seung Kwak 《PloS one》2015,10(4)
Huntington’s disease (HD) is an autosomal dominant neurodegenerative disorder caused by a CAG trinucleotide repeat expansion in the huntingtin gene. Major pathological hallmarks of HD include inclusions of mutant huntingtin (mHTT) protein, loss of neurons predominantly in the caudate nucleus, and atrophy of multiple brain regions. However, the early sequence of histological events that manifest in region- and cell-specific manner has not been well characterized. Here we use a high-content histological approach to precisely monitor changes in HTT expression and characterize deposition dynamics of mHTT protein inclusion bodies in the recently characterized zQ175 knock-in mouse line. We carried out an automated multi-parameter quantitative analysis of individual cortical and striatal cells in tissue slices from mice aged 2–12 months and confirmed biochemical reports of an age-associated increase in mHTT inclusions in this model. We also found distinct regional and subregional dynamics for inclusion number, size and distribution with subcellular resolution. We used viral-mediated suppression of total HTT in the striatum of zQ175 mice as an example of a therapeutically-relevant but heterogeneously transducing strategy to demonstrate successful application of this platform to quantitatively assess target engagement and outcome on a cellular basis. 相似文献
96.
Navarro-Lérida I Corvi MM Barrientos AA Gavilanes F Berthiaume LG Rodríguez-Crespo I 《The Journal of biological chemistry》2004,279(53):55682-55689
A number of cell types express inducible nitric-oxide synthase (NOS2) in response to exogenous insults such as bacterial lipopolysaccharide or proinflammatory cytokines. Although it has been known for some time that the N-terminal end of NOS2 suffers a post-translational modification, its exact identification has remained elusive. Using radioactive fatty acids, we show herein that NOS2 becomes thioacylated at Cys-3 with palmitic acid. Site-directed mutagenesis of this single residue results in the absence of the radiolabel incorporation. Acylation of NOS2 is completely indispensable for intracellular sorting and .NO synthesis. In fact, a C3S mutant of NOS2 is completely inactive and accumulates to intracellular membranes that almost totally co-localize with the Golgi marker beta-cop. Likewise, low concentrations of the palmitoylation blocking agents 2-Br-palmitate or 8-Br-palmitate severely affected the .NO synthesis of both NOS2 induced in muscular myotubes and transfected NOS2. However, unlike endothelial NOS, palmitoylation of inducible NOS is not involved in its targeting to caveolae. We have created 16 NOS2-GFP chimeras to inspect the effect of the neighboring residues of Cys-3 on the degree of palmitoylation. In this regard, the hydrophobic residue Pro-4 and the basic residue Lys-6 seem to be indispensable for palmitoylation. In addition, agents that block the endoplasmic reticulum to Golgi transit such as brefeldin A and monensin drastically reduced NOS2 activity leading to its accumulation in perinuclear areas. In summary, palmitoylation of NOS2 at Cys-3 is required for both its activity and proper intracellular localization. 相似文献
97.
98.
Pablo M. Vergara Cecilia Smith Cristian A. Delpiano Ignacio Orellana Dafne Gho Inao Vazquez 《Oecologia》2010,164(4):981-991
Habitat degradation and fragmentation are expected to reduce seed dispersal rates by reducing fruit availability as well as
the movement and abundance of frugivores. These deleterious impacts may also interact with each other at different spatial
scales, leading to nonlinear effects of fruit abundance on seed dispersal. In this study we assessed whether the degradation
and fragmentation of southern Chilean forests had the potential to restrict seed dispersal the lingue (Persea lingue) tree, a fleshy-fruited tree species. Of five frugivore bird species, the austral thrush (Turdus falcklandii) and the fire-eyed diucon (Xolmis pyrope) were the only legitimate seed dispersers as well as being the most abundant species visiting lingue trees. The results showed
little or no direct effect of habitat fragmentation on seed dispersal estimates, possibly because the assemblage of frugivore
birds was comprised habitat-generalist species. Instead, the number of fruits removed per focal tree exhibited an enhanced
response to crop size, but only in the more connected fragments. In the fruit-richer fragment networks, there was an increased
fragment-size effect on the proportion of fruits removed in comparison to fruit-poor networks in which the fragment size effect
was spurious. We suggest that such nonlinear effects are widespread in fragmented forest regions, resulting from the link
between the spatial scales over which frugivores sample resources and the spatial heterogeneity in fruiting resources caused
by habitat fragmentation and degradation. 相似文献
99.
Juan García-de-Lomas Ignacio Hernández Íñigo Sánchez-García 《Biological invasions》2009,11(2):467-472
The occurrence of the carpet weed Galenia secunda (L. fil.) Sond. (Aizoaceae) has been reported in Southern Spain. G. secunda is a prostrate perennial species native to South Africa. In this paper, the current distribution of G. secunda and the main habitats invaded in Southern Spain, are reported. The distribution survey revealed an area of occupancy of 92 ha
and an extent of occurrence of 14,250 ha for this species, thus suggesting an early stage of invasion. Since the first citation
of this species in Spain (1965), our current data (2007) support a rapid spread and invasiveness of G. secunda as a result of an intense rate of coastal development. G. secunda was more often found near roads, because roads facilitate seed dispersal. G. secunda also appeared in other coastal natural habitats such as sand dunes, where G. secunda forms dense monospecific mats. Studies on its invasion potential and impacts in natural habitats are recommended and control
measures should be developed to prevent future expansion. 相似文献