Literature DB >> 3881328

Liver plasma membrane: the source of high molecular weight alkaline phosphatase in human serum.

M E De Broe, F Roels, E J Nouwen, L Claeys, R J Wieme.   

Abstract

This study presents biochemical, histochemical, morphological and immunological evidence that part of the high molecular weight alkaline phosphatase observed in the serum of patients with liver disease and particularly in cases of intrahepatic cholestasis or focal-, extrahepatic obstruction originates from the liver plasma membrane. The high molecular weight protein alkaline phosphatase complex contains several plasma membrane enzymes and behaves like a plasma membrane fragment after isopycnic density gradient ultracentrifugation in sucrose, cesium chloride and metrizamide. Electron microscopic examination revealed a triple-layered vesicle which retained alkaline phosphatase activity. Incubation of human liver cells with anti-serum against purified high molecular weight multienzyme complex resulted in fixation of antibodies on the plasma membrane as shown by positive plasma membrane fluorescence. These plasma membrane fragments in the serum are not of biliary origin.

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Year:  1985        PMID: 3881328     DOI: 10.1002/hep.1840050124

Source DB:  PubMed          Journal:  Hepatology        ISSN: 0270-9139            Impact factor:   17.425


  14 in total

1.  Bile duct ligation-induced redistribution of canalicular antigen in rat hepatocyte plasma membranes demonstrated by immunogold quantitation.

Authors:  L Landmann; P J Meier; L Bianchi
Journal:  Histochemistry       Date:  1990

2.  Intestinal surfactant-like material. A novel secretory product of the rat enterocyte.

Authors:  K DeSchryver-Kecskemeti; R Eliakim; S Carroll; W F Stenson; M A Moxley; D H Alpers
Journal:  J Clin Invest       Date:  1989-10       Impact factor: 14.808

Review 3.  Clinical use of serum enzymes in liver disease.

Authors:  J J Reichling; M M Kaplan
Journal:  Dig Dis Sci       Date:  1988-12       Impact factor: 3.199

Review 4.  A review of new approaches to assessing hepatic function in animals.

Authors:  C E Cornelius
Journal:  Vet Res Commun       Date:  1987       Impact factor: 2.459

Review 5.  Cellular function and molecular structure of ecto-nucleotidases.

Authors:  Herbert Zimmermann; Matthias Zebisch; Norbert Sträter
Journal:  Purinergic Signal       Date:  2012-05-04       Impact factor: 3.765

6.  Heat-stable alkaline phosphatase as a marker for human and monkey type-I pneumocytes.

Authors:  E J Nouwen; N Buyssens; M E De Broe
Journal:  Cell Tissue Res       Date:  1990-05       Impact factor: 5.249

7.  Redistribution and fate of colchicine-induced alkaline phosphatase in rat hepatocytes: possible formation of autophagosomes whose membrane is derived from excess plasma membrane.

Authors:  N Araki; Y Takashima; T Makita
Journal:  Histochem Cell Biol       Date:  1995-10       Impact factor: 4.304

8.  Changes in biliary (high-molecular-mass) and liver isoforms of alkaline phosphatase after baboon-to-human liver transplantation.

Authors:  D Mercer; M Tang; I R Marino; A Demetris; J Fung; T Starzl; V Warty
Journal:  Clin Chem       Date:  1994-07       Impact factor: 8.327

9.  The isoelectric focusing properties of serum alkaline phosphatase in disease and following prednisolone and phenylbutazone administration in the horse.

Authors:  R S Ellison; R M Jacobs
Journal:  Can J Vet Res       Date:  1990-01       Impact factor: 1.310

10.  The preparation of monoclonal antibodies to human bone and liver alkaline phosphatase and their use in immunoaffinity purification and in studying these enzymes when present in serum.

Authors:  E M Bailyes; R N Seabrook; J Calvin; G A Maguire; C P Price; K Siddle; J P Luzio
Journal:  Biochem J       Date:  1987-06-15       Impact factor: 3.857

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