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Saponin permeabilization of rough microsomes from rat liver reveals a novel prothrombin pool

S Tollefsen1, L Wierød, A Skotte

  • 1Department of Biochemistry, University of Oslo, P.O. Box 1041 Blindern, 0316, Oslo, Norway.

Insights

Researchers discovered a new pool of prothrombin attached to the microsomal membrane via ionic interactions. This finding sheds light on prothrombin

Area of Science:

  • Biochemistry
  • Cell Biology
  • Membrane Biology

Background:

  • Prothrombin is a key protein in the blood coagulation cascade.
  • Its localization within cellular compartments, particularly the endoplasmic reticulum, is crucial for its function.
  • Understanding prothrombin's association with membranes is vital for comprehending its synthesis and secretion.

Purpose of the Study:

  • To investigate the localization and association of prothrombin with rough microsomal membranes.
  • To identify and characterize different pools of prothrombin associated with the membrane.
  • To compare prothrombin distribution in normal and warfarin-treated rats.

Main Methods:

  • Differential extraction of prothrombin from rough microsomes using saponin and high salt concentrations.
  • Fractionation of microsomes to isolate lumenal, peripherally associated, and membrane-bound prothrombin.
  • Quantification of prothrombin in different fractions.
  • In vitro labeling of prothrombin using (14)C-gamma-carboxylation.

Main Results:

  • A novel pool of prothrombin, associated ionically with the microsomal membrane, was identified.
  • In normal rats, 55% of prothrombin was lumenal, 29% peripherally associated, and 16% membrane-bound.
  • Warfarin treatment significantly altered distribution, with 86% lumenal, 5% peripherally associated, and 9% membrane-bound prothrombin.
  • Newly synthesized prothrombin (labeled) showed significant association with membrane-associated and membrane-bound pools (42% and 33%, respectively).

Conclusions:

  • Rough microsomes contain distinct pools of prothrombin, including a novel membrane-associated fraction.
  • Prothrombin's association with the microsomal membrane is dynamic and influenced by factors like warfarin treatment.
  • These findings provide new insights into the intracellular trafficking and membrane interactions of prothrombin during its synthesis.

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