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951.
Chandramohanadas R Park Y Lui L Li A Quinn D Liew K Diez-Silva M Sung Y Dao M Lim CT Preiser PR Suresh S 《PloS one》2011,6(6):e20869
Upon infection and development within human erythrocytes, P. falciparum induces alterations to the infected RBC morphology and bio-mechanical properties to eventually rupture the host cells through parasitic and host derived proteases of cysteine and serine families. We used previously reported broad-spectrum inhibitors (E64d, EGTA-AM and chymostatin) to inhibit these proteases and impede rupture to analyze mechanical signatures associated with parasite escape. Treatment of late-stage iRBCs with E64d and EGTA-AM prevented rupture, resulted in no major RBC cytoskeletal reconfiguration but altered schizont morphology followed by dramatic re-distribution of three-dimensional refractive index (3D-RI) within the iRBC. These phenotypes demonstrated several-fold increased iRBC membrane flickering. In contrast, chymostatin treatment showed no 3D-RI changes and caused elevated fluctuations solely within the parasitophorous vacuole. We show that E64d and EGTA-AM supported PV breakdown and the resulting elevated fluctuations followed non-Gaussian pattern that resulted from direct merozoite impingement against the iRBC membrane. Optical trapping experiments highlighted reduced deformability of the iRBC membranes upon rupture-arrest, more specifically in the treatments that facilitated PV breakdown. Taken together, our experiments provide novel mechanistic interpretations on the role of parasitophorous vacuole in maintaining the spherical schizont morphology, the impact of PV breakdown on iRBC membrane fluctuations leading to eventual parasite escape and the evolution of membrane stiffness properties of host cells in which merozoites were irreversibly trapped, recourse to protease inhibitors. These findings provide a comprehensive, previously unavailable, body of information on the combined effects of biochemical and biophysical factors on parasite egress from iRBCs. 相似文献
952.
Access to human reproductive tissue is essential for many forms of stem cell research. We identify questions for future studies of tissue providers, procurers, and end-user scientists, and suggest that international comparative studies of all three parties, and of the relationships between them, will improve the ethical supply of tissue. 相似文献
953.
Sung K Dolcos S Flor-Henry S Zhou C Gasior C Argo J Dolcos F 《Journal of visualized experiments : JoVE》2011,(53):e2379
The ability to gauge social interactions is crucial in the assessment of others' intentions. Factors such as facial expressions and body language affect our decisions in personal and professional life alike (1). These "friend or foe" judgements are often based on first impressions, which in turn may affect our decisions to "approach or avoid". Previous studies investigating the neural correlates of social cognition tended to use static facial stimuli (2). Here, we illustrate an experimental design in which whole-body animated characters were used in conjunction with functional magnetic resonance imaging (fMRI) recordings. Fifteen participants were presented with short movie-clips of guest-host interactions in a business setting, while fMRI data were recorded; at the end of each movie, participants also provided ratings of the host behaviour. This design mimics more closely real-life situations, and hence may contribute to better understanding of the neural mechanisms of social interactions in healthy behaviour, and to gaining insight into possible causes of deficits in social behaviour in such clinical conditions as social anxiety and autism (3). 相似文献
954.
The mammalian target of rapamycin (mTOR) is an evolutionarily conserved serine/threonine protein kinase that regulates numerous cellular processes including cell growth, proliferation, cell cycle, and autophagy. mTOR forms two different multi-protein complexes referred to as mTOR complex 1 (mTORC1) and mTORC2, and each complex exerts distinct functions exclusively. mTORC1 activity is sensitive to the selective inhibitor rapamycin, whereas mTORC2 is resistant. mTORC1 is regulated by many intra- and extra-cellular cues such as growth factors, nutrients, and energy-sensing signals, while mTORC2 senses ribosome maturation and growth factor signaling. This review focuses on current understandings by which mTORC1 pathway senses cellular nutrient availability for its activation. 相似文献
955.
Once people perceive what is in the hidden figure such as Dallenbach’s cow and Dalmatian, they seldom seem to come back to
the previous state when they were ignorant of the answer. This special type of learning process can be accomplished in a short
time, with the effect of learning lasting for a long time (visual one-shot learning). Although it is an intriguing cognitive
phenomenon, the lack of the control of difficulty of stimuli presented has been a problem in research. Here we propose a novel
paradigm to create new hidden figures systematically by using a morphing technique. Through gradual changes from a blurred
and binarized two-tone image to a blurred grayscale image of the original photograph including objects in a natural scene,
spontaneous one-shot learning can occur at a certain stage of morphing when a sufficient amount of information is restored
to the degraded image. A negative correlation between confidence levels and reaction times is observed, giving support to
the fluency theory of one-shot learning. The correlation between confidence ratings and correct recognition rates indicates
that participants had an accurate introspective ability (metacognition). The learning effect could be tested later by verifying
whether or not the target object was recognized quicker in the second exposure. The present method opens a way for a systematic
production of “good” hidden figures, which can be used to demystify the nature of visual one-shot learning. 相似文献
956.
Yun SH Kwon SO Park GW Kim JY Kang SG Lee JH Chung YH Kim S Choi JS Kim SI 《Journal of Proteomics》2011,74(10):1926-1933
Thermococcus onnurineus NA1 is a typical sulfur-reducing hyperthermophilic archaeon. Genome sequence analysis has shown that T. onnurineus NA1 retains the metabolic pathways necessary not only for organotrophic, but also for carboxydotrophic, growth. T. onnurineus NA1 carboxydotrophic growth may result in hydrogen production, as this archaeon produces hydrogen during oxidizing formate. In this study, we profiled the proteome of T. onnurineus NA1 cultured under carboxydotrophic conditions using CO as an electron donor by the SDS-PAGE/LC-MS/MS method. A total of 1395 proteins were identified by two independent proteomic analyses, which corresponds to ~71% of the total predicted open reading frames. To our knowledge, this level of identification coverage exceeds those of other global proteome profiling studies in Archaea. Furthermore, the biological functions of the identified proteins were predicted and cognate enzymes were mapped to the appropriate metabolic pathways. More than 90% of the genes belonging to hydrogenase gene clusters such as Mbx, Sulf-I, Mbh, Hyg4-I, Hyg4-II, and Hyf4-III were expressed during CO culture. This means that hydrogenases induced under carboxydotrophic conditions surpass those induced under an organotrophic condition (yeast extract-peptone-sulfur). Our data suggest that hydrogen production is caused by the expression and functional assembly of T. onnurineus NA1 hydrogenase genes during culture in the presence of CO. 相似文献
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