We present here a new method for calculating the radius of a transmembrane pore in a phospholipid bilayer. To compare size-related properties of pores in bilayers of various compositions, generated and maintained under different physical and chemical conditions, reference metrics are needed. Operational metrics can be associated with some observed behavior. For example, pore size can be defined by the largest object that will pass through the length of the pore. The novelty of the present approach resides in the characterization of electropore geometry via a statistical approach, based on essential dynamics rules. We define the pore size geometrically with an algorithm for determining the pore radius. In particular, we extract the radius from the tri-dimensional surface of a defined pore region. The method is applied to a pore formed in a phospholipid bilayer by application of an external electric field. Although the details described here are specific for lipid pores in molecular dynamics simulations, the method can be generalized for any kind of pores for which appropriate structural information is available

Geometrical characterization of an electropore from water positional fluctuations / Marracino, Paolo; Castellani, F.; Vernier, P. T.; Liberti, Micaela; Apollonio, Francesca. - In: THE JOURNAL OF MEMBRANE BIOLOGY. - ISSN 0022-2631. - 250:1(2017), pp. 11-19. [10.1007/s00232-016-9917-y]

Geometrical characterization of an electropore from water positional fluctuations

MARRACINO, PAOLO;LIBERTI, Micaela;APOLLONIO, Francesca
2017

Abstract

We present here a new method for calculating the radius of a transmembrane pore in a phospholipid bilayer. To compare size-related properties of pores in bilayers of various compositions, generated and maintained under different physical and chemical conditions, reference metrics are needed. Operational metrics can be associated with some observed behavior. For example, pore size can be defined by the largest object that will pass through the length of the pore. The novelty of the present approach resides in the characterization of electropore geometry via a statistical approach, based on essential dynamics rules. We define the pore size geometrically with an algorithm for determining the pore radius. In particular, we extract the radius from the tri-dimensional surface of a defined pore region. The method is applied to a pore formed in a phospholipid bilayer by application of an external electric field. Although the details described here are specific for lipid pores in molecular dynamics simulations, the method can be generalized for any kind of pores for which appropriate structural information is available
2017
electroporation; electropore geometry; molecular dynamics; pore radius; biophysics; physiology; cell biology
01 Pubblicazione su rivista::01a Articolo in rivista
Geometrical characterization of an electropore from water positional fluctuations / Marracino, Paolo; Castellani, F.; Vernier, P. T.; Liberti, Micaela; Apollonio, Francesca. - In: THE JOURNAL OF MEMBRANE BIOLOGY. - ISSN 0022-2631. - 250:1(2017), pp. 11-19. [10.1007/s00232-016-9917-y]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/954458
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