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Physiology of plasminogen: with special reference to activation and degradation

A Takada1, Y Takada

  • 1Department of Physiology, Hamamatsu University, School of Medicine, Shizuoka-ken, Japan.

Haemostasis
|January 1, 1988
PubMed

Insights

Plasminogen activation is enhanced by fibrin clots, with conformational changes influencing its degradation. Fibrinolytic activity declines with age despite stable plasminogen levels.

Area of Science:

  • Biochemistry
  • Physiology

Background:

  • Plasminogen, primarily synthesized in the liver, is crucial for fibrinolysis.
  • Plasma plasminogen levels are stable throughout adulthood but low in newborns.
  • Fibrinolytic system activity is influenced by various physiological factors.

Purpose of the Study:

  • To investigate the activation pathways of native plasminogen (Glu-plg).
  • To examine the degradation of plasminogen by elastase.
  • To explore the relationship between plasma plasminogen levels and fibrinolytic activity across different ages.

Main Methods:

  • Activation studies of Glu-plg with urokinase (UK) and tissue plasminogen activator (t-PA) in the presence and absence of fibrin.
  • Analysis of plasminogen degradation products by elastase, including the effect of tranexamic acid.
  • Correlation analysis of plasma plasminogen levels and fibrinolytic activity in various age groups.

Main Results:

  • Glu-plg activation is significantly enhanced by fibrin clots, with conformational changes in glycosylation variants (Glu-plg I vs. II) affecting activation efficiency.
  • Immunoblotting suggests direct activation of Glu-plg to plasmin, not via Lys-plg, in clotted plasma.
  • Elastase degrades plasminogen into fragments (K1-K4, mini-plg); tranexamic acid increases degradation rate by exposing hydrophobic regions.
  • Lys-plg or conformationally altered Glu-plg are more susceptible to degradation in vivo.
  • Fibrinolytic activity decreases with age, while plasma plasminogen levels remain constant.

Conclusions:

  • Fibrin plays a critical role in efficient plasminogen activation.
  • Conformational state and glycosylation influence plasminogen activation and degradation.
  • Age-related decline in fibrinolytic activity is not due to changes in plasminogen levels but potentially altered activation or degradation dynamics.

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