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Hydrostatic pressure effects upon cellular leakage and active transport by Vibrio marinus.

作者信息

Masuda K V, Albright L J

出版信息

Z Allg Mikrobiol. 1978;18(10):731-40. doi: 10.1002/jobm.3630181005.

Abstract

Hydrostatic pressures greater than ca. 400 atm cause release of cellular components of Vibrio marinus MP-1 in the order protein greater than RNA greater than malate dehydrogenase greater than DNA greater than amino acids. Increased pressures also slow the rate of cycloleucine (non-metabolizable analogue of L-leucine acid L-valine) uptake but increase its efflux rate. Lineweaver-Burk plots (1/V versus 1/[S]) of cycloleucine uptake indicate that the Km increases with compression which suggests a decrease in affinity of the transport system for substrate at increased pressures.

摘要

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