4.5 Article

Computational modeling of subcellular transport and signaling

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CURRENT OPINION IN STRUCTURAL BIOLOGY
卷 25, 期 -, 页码 92-97

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CURRENT BIOLOGY LTD
DOI: 10.1016/j.sbi.2014.01.006

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  1. NIH grants (ADM) from the National Institute for General Medical Sciences
  2. National Heart Lung and Blood Institute
  3. Evita programme of the Research Council of Norway
  4. Research Council of Norway to the Center for Biomedical Computing at Simula Research Laboratory
  5. AHA award [13POST14510036]

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Numerous signaling processes in the cell are controlled in microdomains that are defined by cellular structures ranging from nm to mu m in size. Recent improvements in microscopy enable the resolution and reconstruction of these micro domains, while new computational methods provide the means to elucidate their functional roles. Collectively these tools allow for a biophysical understanding of the cellular environment and its pathological progression in disease. Here we review recent advancements in microscopy, and subcellular modeling on the basis of reconstructed geometries, with a special focus on signaling microdomains that are important for the excitation contraction coupling in cardiac myocytes.

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