Phospholipid barrier to fibrinolysis: role for the anionic polar head charge and the gel phase crystalline structure.
نویسندگان
چکیده
The massive presence of phospholipids is demonstrated in frozen sections of human arterial thrombi. Purified platelet phospholipids and synthetic phospholipids retard in vitro tissue-type plasminogen activator (tPA)-induced fibrinolysis through effects on plasminogen activation and plasmin function. The inhibition of plasminogen activation on the surface of fibrin correlates with the fraction of anionic phospholipid. The phospholipids decrease the amount of tPA penetrating into the clot by 75% and the depth of the reactive surface layer occupied by the activator by up to 30%, whereas for plasmin both of these parameters decrease by approximately 50%. The phospholipids are not only a diffusion barrier, they also bind the components of the fibrinolytic system. Isothermal titration calorimetry shows binding characterized with dissociation constants in the range 0.35-7.64 microm for plasmin and tPA (lower values with more negative phospholipids). The interactions are endothermic and thermodynamically driven by an increase in entropy, probably caused by the rearrangements in the ordered gel structure of the phospholipids (in line with the stronger inhibition at gel phase temperatures compared with liquid crystalline phase temperatures). These findings show a phospholipid barrier, which should be overcome during lysis of arterial thrombi.
منابع مشابه
Role of gel aging in template-free synthesis of micro and nano-crystalline sodalites
A facile effective stirring aging at room temperature prior to conventional hydrothermal treatment was employed in the template-free synthesis of micro- and nano-crystalline sodalites with two different initial gel compositions. The effect of initial Si/Al molar ratio, NaOH concentration and stirring aging time were investigated on the morphology and particle size of the...
متن کاملBiomembrane phase transitions. Studies of lipid-water systems using differential scanning calorimetry.
Differential scanning calorimetry has been applied to the study of some simple model biomembranes, i.e. lipid-water systems, and the endothermic phase transitions which they exhibit when transforming from the gel to liquid crystal phase have been studied. These studies show that: 1. When lipids of the same class, e.g. lecithins with dissimilar chain lengths Cl4 and Cl6 are mixed, a continuous s...
متن کاملEffect of Lipid Head Groups on Double-Layered Two-Dimensional Crystals Formed by Aquaporin-0
Aquaporin-0 (AQP0) is a lens-specific water channel that also forms membrane junctions. Reconstitution of AQP0 with dimyristoyl phosphatidylcholine (DMPC) and E. coli polar lipids (EPL) yielded well-ordered, double-layered two-dimensional (2D) crystals that allowed electron crystallographic structure determination of the AQP0-mediated membrane junction. The interacting tetramers in the two crys...
متن کاملThe role of the lipid polar part in ripple phase formation.
By taking into consideration the dipole structure of the polar heads of model membrane molecules, ripple phase modelling was achievable. Computer simulations enabled the selective analysis of a model membrane. Considering only the hydrophobic part of the lipid membrane, the gel-fluid transition stage can be obtained in such a simulation. Assuming an additional degree of freedom, the whole molec...
متن کاملDriving force for crystallization of anionic lipid membranes revealed by atomistic simulations.
Crystalline vesicles are promising nanomaterials due to their mechanical stability in various environments. To control their fabrication, it is essential to understand the effects of different experimental conditions on crystallization. Here we perform atomistic molecular dynamics simulations of anionic lipid membranes of 1,2-dilauroyl-sn-glycero-3-phosphol-L-serine. In the presence of Na(+) mo...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- The Journal of biological chemistry
دوره 279 38 شماره
صفحات -
تاریخ انتشار 2004