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Comment on: Lee, et al. Cancer Res 2011; 71:3921-31.  相似文献   

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A balancing act     
《Lab animal》2012,41(9):265
Mary E. Martin, DVM, MPH, DACLAM, Chief of Veterinary and Educational Services, Cornell University, Center for Animal Resources and Education, Ithaca, NY.  相似文献   

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A balancing act     
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Adherent cells respond to mechanical properties of the surrounding extracellular matrix. Mechanical forces, sensed at specialized cell-matrix adhesion sites, promote actomyosin-based contraction within the cell. By manipulating matrix rigidity and adhesion strength, new roles for actomyosin contractility in the regulation of basic cellular functions, including cell proliferation, migration and stem cell differentiation, have recently been discovered. These investigations demonstrate that a balance of forces between cell adhesion on the outside and myosin II-based contractility on the inside of the cell controls many aspects of cell behavior. Disturbing this balance contributes to the pathogenesis of various human diseases. Therefore, elaborate signaling networks have evolved that modulate myosin II activity to maintain tensional homeostasis. These include signaling pathways that regulate myosin light chain phosphorylation as well as myosin II heavy chain interactions.  相似文献   

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Hyaluronan and homeostasis: a balancing act.   总被引:14,自引:0,他引:14  
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Large ribozymes typically require very long times to refold into their active conformation in vitro, because the RNA is easily trapped in metastable misfolded structures. Theoretical models show that the probability of misfolding is reduced when local and long-range interactions in the RNA are balanced. Using the folding kinetics of the Tetrahymena ribozyme as an example, we propose that folding rates are maximized when the free energies of forming independent domains are similar to each other. A prediction is that the folding pathway of the ribozyme can be reversed by inverting the relative stability of the tertiary domains. This result suggests strategies for optimizing ribozyme sequences for therapeutics and structural studies.  相似文献   

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Cline H 《Current biology : CB》2005,15(6):R203-R205
Recent studies have implicated a number of membrane-associated proteins, including the signaling pair neuroligin and beta-neurexin, in synapse formation, suggesting that they govern the ratio of inhibitory and excitatory synapses on CNS neurons. These findings, together with data indicating that the genes encoding neuroligin and PSD95 are altered in autism patients, suggest that a molecular understanding of complex neurological diseases is within reach.  相似文献   

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Lalvani A  Behr MA  Sridhar S 《Cell》2012,148(3):389-391
Tobin and colleagues show that both inhibition and excessive production of the inflammatory mediator TNFα impact the pathogenesis of tuberculosis (TB) and the response to therapy. Identifying a critical role for the genetically determined balance between pro- and anti-inflammatory eicosanoids in regulating TNFα levels provides a roadmap to tailored TB treatment based on host genotype.  相似文献   

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Transitions between epithelium and mesenchyme, in either direction, contribute repeatedly to animal development. Three striking papers suggest that distinct components with opposite activities, which together form a complex known for its role in cytokinesis, control these opposite transitions.  相似文献   

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Integrins in angiogenesis: multitalented molecules in a balancing act   总被引:7,自引:0,他引:7  
Over the last 10–15 years the varied roles of cell adhesion molecules in the development of new blood vessels have received extensive attention. To date, more than 500 publications have been dedicated specifically to the role of a single family of adhesion molecules, namely integrins, in the process of angiogenesis. Although one can now appreciate the involvement of integrins in this process, and indeed antagonists of integrins are presently being tested as anti-angiogenic treatments, the precise regulation and exact action of integrins is still unclear. Here we will clarify the varied role of integrins and aim to elucidate and simplify the combined functions of these molecules in angiogenesis.  相似文献   

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