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991.
Tsubasa Fukue Motohide Tamura Ryo Kandori Nobuhiko Kusakabe James H. Hough Jeremy Bailey Douglas C. B. Whittet Philip W. Lucas Yasushi Nakajima Jun Hashimoto 《Origins of life and evolution of the biosphere》2010,40(3):335-346
We present a wide-field (∼6′ × 6′) and deep near-infrared (K
s
band: 2.14 μm) circular polarization image in the Orion nebula, where massive stars and many low-mass stars are forming.
Our results reveal that a high circular polarization region is spatially extended (∼0.4 pc) around the massive star-forming
region, the BN/KL nebula. However, other regions, including the linearly polarized Orion bar, show no significant circular
polarization. Most of the low-mass young stars do not show detectable extended structure in either linear or circular polarization,
in contrast to the BN/KL nebula. If our solar system formed in a massive star-forming region and was irradiated by net circularly
polarized radiation, then enantiomeric excesses could have been induced, through asymmetric photochemistry, in the parent
bodies of the meteorites and subsequently delivered to Earth. These could then have played a role in the development of biological
homochirality on Earth. 相似文献
992.
The most common cystic fibrosis (CF)‐causing mutation in the cystic fibrosis transmembrane conductance regulator (CFTR) is deletion of Phe508 (ΔF508) in the first of two nucleotide‐binding domains (NBDs). Nucleotide binding and hydrolysis at the NBDs and phosphorylation of the regulatory (R) region are required for gating of CFTR chloride channel activity. We report NMR studies of wild‐type and ΔF508 murine CFTR NBD1 with the C‐terminal regulatory extension (RE), which contains residues of the R region. Interactions of the wild‐type NBD1 core with the phosphoregulatory regions, the regulatory insertion (RI) and RE, are disrupted upon phosphorylation, exposing a potential binding site for the first coupling helix of the N‐terminal intracellular domain (ICD). Phosphorylation of ΔF508 NBD1 does not as effectively disrupt interactions with the phosphoregulatory regions, which, along with other structural differences, leads to decreased binding of the first coupling helix. These results provide a structural basis by which phosphorylation of CFTR may affect the channel gating of full‐length CFTR and expand our understanding of the molecular basis of the ΔF508 defect. 相似文献
993.
Anotida Madzvamuse Eamonn A. Gaffney Philip K. Maini 《Journal of mathematical biology》2010,61(1):133-164
By using asymptotic theory, we generalise the Turing diffusively-driven instability conditions for reaction-diffusion systems
with slow, isotropic domain growth. There are two fundamental biological differences between the Turing conditions on fixed
and growing domains, namely: (i) we need not enforce cross nor pure kinetic conditions and (ii) the restriction to activator-inhibitor kinetics to induce pattern formation on a growing biological system is no longer a requirement. Our theoretical findings
are confirmed and reinforced by numerical simulations for the special cases of isotropic linear, exponential and logistic
growth profiles. In particular we illustrate an example of a reaction-diffusion system which cannot exhibit a diffusively-driven
instability on a fixed domain but is unstable in the presence of slow growth. 相似文献
994.
Adak AK Leonov AP Ding N Thundimadathil J Kularatne S Low PS Wei A 《Bioconjugate chemistry》2010,21(11):2065-2075
Bishydrazides are versatile linkers for attaching glycans to substrates for lectin binding and pathogen detection schemes. The α,ω-bishydrazides of carboxymethylated hexa(ethylene glycol) (4) can be conjugated at one end to unprotected oligosaccharides, then attached onto carrier proteins, tethered onto activated carboxyl-terminated surfaces, or functionalized with a photoactive cross-linking agent for lithographic patterning. Glycoconjugates of bishydrazide 4 can also be converted into dithiocarbamates (DTCs) by treatment with CS(2) under mild conditions, for attachment onto gold substrates. The immobilized glycans serve as recognition elements for cell-surface lectins and enable the detection and capture of bacterial pathogens such as Pseudomonas aeruginosa by their adsorption onto micropatterned substrates. A detection limit of 103 cfu/mL is demonstrated, using a recently introduced method based on optical pattern recognition. 相似文献
995.
996.
Gheorghe Benga Bogdan E. Chapman Guy C. Cox Philip W. Kuchel 《Cell biology international》2010,34(7):703-708
As part of a programme of comparative measurements of P d (diffusional water permeability) the RBCs (red blood cells) from an aquatic monotreme, platypus (Ornithorhynchus anatinus), and an aquatic reptile, saltwater crocodile (Crocodylus porosus) were studied. The mean diameter of platypus RBCs was estimated by light microscopy and found to be ~6.3 μm. P d was measured by using an Mn2+‐doping 1H NMR (nuclear magnetic resonance) technique. The P d (cm/s) values were relatively low: ~2.1×10?3 at 25°C, 2.5×10?3 at 30°C, 3.4×10?3 at 37°C and 4.5 at 42°C for the platypus RBCs and ~2.8×10?3 at 25°C, 3.2×10?3 at 30°C, 4.5×10?3 at 37°C and 5.7×10?3 at 42°C for the crocodile RBCs. In parallel with the low water permeability, the E a,d (activation energy of water diffusion) was relatively high, ~35 kJ/mol. These results suggest that “conventional” WCPs (water channel proteins), or AQPs (aquaporins), are probably absent from the plasma membranes of RBCs from both the platypus and the saltwater crocodile. 相似文献
997.
Sampat Ingale Johannes S. Gach Michael B. Zwick Philip E. Dawson 《Journal of peptide science》2010,16(12):716-722
The membrane proximal external region (MPER) of gp41 abuts the viral membrane at the base of HIV‐1 envelope glycoprotein spikes. The MPER is highly conserved and is rich in Trp and other lipophilic residues. The MPER is also required for the infection of host cells by HIV‐1 and is the target of the broadly neutralizing antibodies, 4E10, 2F5, and Z13e1. These neutralizing antibodies are valuable tools for understanding relevant conformations of the MPER and for studying HIV‐1 neutralization, but multiple approaches used to elicit MPER binding antibodies with similar neutralization properties have failed. Here we report our efforts to mimic the MPER using linear as well as constrained peptides. Unnatural amino acids were also introduced into the core epitope of 4E10 to probe requirements of antibody binding. Peptide analogs with C‐terminal Api or Aib residues designed to be helical transmembrane (TM) domain surrogates exhibit enhanced binding to the 4E10 and Z13e1 antibodies. However, we find that placement of constrained amino acids at nonbinding sites within the core epitope significantly reduce binding. These results are relevant to an understanding of native MPER structure on HIV‐1, and form a basis for a chemical synthesis approach to mimic MPER stricture and to construct an MPER‐based vaccine. Copyright © 2010 European Peptide Society and John Wiley & Sons, Ltd. 相似文献
998.
Phillip Nagley Gavin C. Higgins Julie D. Atkin Philip M. Beart 《生物化学与生物物理学报:疾病的分子基础》2010,1802(1):167-185
Neurones undergo diverse forms of cell death depending on the nature and severity of the stress. These death outcomes are now classified into various types of programmed cell death, including apoptosis, autophagy and necrosis. Each of these pathways can run in parallel and all have mitochondria as a central feature. Recruitment of mitochondria into cell death signalling involves either (or both) induction of specific death responses through release of apoptogenic proteins into the cytosol, or perturbation in function leading to loss of mitochondrial energisation and ATP synthesis. Cross-talk between these signalling pathways, particularly downstream of mitochondria, determines the resultant pattern of cell death. The differential recruitment of specific death pathways depends on the timing of engagement of mitochondrial signalling. Other influences on programmed cell death pathways occur through stress of the endoplasmic reticulum and the associated ubiquitin-proteasome system normally handling potentially neurotoxic protein aggregates. Based upon contemporary evidence apoptosis is a relatively rare in the mature brain whereas the contribution of programmed necrosis to various neuropathologies has been underestimated. The death outcomes that neurones exhibit during acute or chronic injury or pathological conditions considered here (oxidative stress, hypoxic-ischaemic injury, amyotrophic lateral sclerosis, Parkinson's and Huntington's diseases) fall within a spectrum of the diverse death types across the apoptosis-necrosis continuum. Indeed, dying or dead neurones may simultaneously manifest characteristics of more than one type of death pathway. Understanding neuronal death pathways and their cross-talk not only informs the detailed pathobiology but also suggests novel therapeutic strategies. 相似文献
999.
Bouke C. de Jong Ifedayo Adetifa Brigitte Walther Philip C. Hill Martin Antonio Martin Ota & Richard A. Adegbola 《FEMS immunology and medical microbiology》2010,58(1):102-105
Mycobacterium africanum (MAF) is a common cause of human pulmonary tuberculosis in West Africa. We previously described phenotypic differences between MAF and Mycobacterium tuberculosis (MTB) among 290 patients. In the present analysis, we compared 692 tuberculosis patients infected with the two most common lineages within the (MTB) complex found in the Gambia, namely MAF West African type 2 (39% prevalence) and Euro-American MTB (55% prevalence). We identified additional phenotypic differences between infections with these two organisms. MAF patients were more likely to be older and HIV infected. In addition, they had worse disease on chest X-ray, despite complaining of cough for an equal duration, and were more likely severely malnourished. In this cohort, the prevalence of MAF did not change significantly over a 7-year period. 相似文献
1000.
Deep brain stimulation (DBS) of the subthlamic nucleus (STN) represents an effective treatment for medically refractory Parkinson’s
disease; however, understanding of its effects on basal ganglia network activity remains limited. We constructed a computational
model of the subthalamopallidal network, trained it to fit in vivo recordings from parkinsonian monkeys, and evaluated its response to STN DBS. The network model was created with synaptically
connected single compartment biophysical models of STN and pallidal neurons, and stochastically defined inputs driven by cortical
beta rhythms. A least mean square error training algorithm was developed to parameterize network connections and minimize
error when compared to experimental spike and burst rates in the parkinsonian condition. The output of the trained network
was then compared to experimental data not used in the training process. We found that reducing the influence of the cortical
beta input on the model generated activity that agreed well with recordings from normal monkeys. Further, during STN DBS in
the parkinsonian condition the simulations reproduced the reduction in GPi bursting found in existing experimental data. The
model also provided the opportunity to greatly expand analysis of GPi bursting activity, generating three major predictions.
First, its reduction was proportional to the volume of STN activated by DBS. Second, GPi bursting decreased in a stimulation
frequency dependent manner, saturating at values consistent with clinically therapeutic DBS. And third, ablating STN neurons,
reported to generate similar therapeutic outcomes as STN DBS, also reduced GPi bursting. Our theoretical analysis of stimulation
induced network activity suggests that regularization of GPi firing is dependent on the volume of STN tissue activated and
a threshold level of burst reduction may be necessary for therapeutic effect. 相似文献