Literature DB >> 7640266

Fusion of proteolyzed low-density lipoprotein in the fluid phase: a novel mechanism generating atherogenic lipoprotein particles.

M Piha1, L Lindstedt, P T Kovanen.   

Abstract

During atherogenesis, lipid droplets appear in the extracellular space of the arterial intima. We previously observed generation of lipid droplets on the surface of exocytosed mast cell granules when granule neutral proteases degraded the granule-bound LDL particles and the particles became unstable and fused [Kovanen, P.T., & Kokkonen, J.O. (1991) J. Biol. Chem. 266, 4430-4436]. We have now extended our studies to the fluid phase and examined the effects of several proteases (trypsin, alpha-chymotrypsin, Pronase, plasmin, kallikrein, and thrombin) all known for their ability to cleave the apolipoprotein B-100 component (apoB-100) of LDL. The fused LDL particles were separated from unfused particles by gel filtration or by density gradient ultracentrifugation. Proteolytic degradation of LDL with trypsin, alpha-chymotrypsin, or Pronase led to fragmentation of apoB-100 and release of the fragments from the LDL particles and triggered particle fusion. In contrast, proteolytic degradation of LDL with plasmin, kallikrein, or thrombin, which also led to fragmentation of apoB-100 but not to release of fragments, did not trigger particle fusion. With advancing degradation of apoB-100, particles having progressively lower densities and larger sizes were generated. Thus, after incubation for 24 h with alpha-chymotrypsin (apoB-100:alpha-chymotrypsin mass ratio 10:1) 40% of the apoB-100 was degraded and about 30% of the LDL particles had fused and reached diameters of up to 70 nm and densities ranging from 1.020 to < 1.005 g/mL. When the proteolyzed LDL particles, both unfused and fused, were incubated with macrophages, only those particles that had undergone fusion were ingested and converted into intracellular cholesteryl ester droplets. Thus proteolysis of LDL with release of apoB-100 fragments renders the particles sufficiently unstable to fuse and thus to become liable to ingestion by macrophages. Since the fused LDL particles resemble the extracellular lipid droplets in the atherosclerotic arterial intima and generate foam cells in vitro, these findings support the idea that proteolytic fusion of LDL is an atherogenic process.

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Year:  1995        PMID: 7640266     DOI: 10.1021/bi00032a004

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  7 in total

1.  Low density lipoprotein aged in plasma forms clusters resembling subendothelial droplets: aggregation via surface sites.

Authors:  Marco De Spirito; Roberto Brunelli; Giampiero Mei; Francesca R Bertani; Gabriele Ciasca; Giulia Greco; Massimiliano Papi; Giuseppe Arcovito; Fulvio Ursini; Tiziana Parasassi
Journal:  Biophys J       Date:  2006-03-13       Impact factor: 4.033

2.  Proteolysis sensitizes LDL particles to phospholipolysis by secretory phospholipase A2 group V and secretory sphingomyelinase.

Authors:  Riia Plihtari; Eva Hurt-Camejo; Katariina Oörni; Petri T Kovanen
Journal:  J Lipid Res       Date:  2010-02-01       Impact factor: 5.922

3.  Plasmin promotes foam cell formation by increasing macrophage catabolism of aggregated low-density lipoprotein.

Authors:  Abigail S Haka; Inna Grosheva; Rajesh K Singh; Frederick R Maxfield
Journal:  Arterioscler Thromb Vasc Biol       Date:  2013-05-23       Impact factor: 8.311

Review 4.  Aggregation and fusion of low-density lipoproteins in vivo and in vitro.

Authors:  Mengxiao Lu; Olga Gursky
Journal:  Biomol Concepts       Date:  2013-10

5.  Chymase in exocytosed rat mast cell granules effectively proteolyzes apolipoprotein AI-containing lipoproteins, so reducing the cholesterol efflux-inducing ability of serum and aortic intimal fluid.

Authors:  L Lindstedt; M Lee; G R Castro; J C Fruchart; P T Kovanen
Journal:  J Clin Invest       Date:  1996-05-15       Impact factor: 14.808

Review 6.  Modified Lipoproteins Induce Arterial Wall Inflammation During Atherogenesis.

Authors:  Martina B Lorey; Katariina Öörni; Petri T Kovanen
Journal:  Front Cardiovasc Med       Date:  2022-03-03

7.  ABCA1 (ATP-Binding Cassette Transporter A1) Mediates ApoA-I (Apolipoprotein A-I) and ApoA-I Mimetic Peptide Mobilization of Extracellular Cholesterol Microdomains Deposited by Macrophages.

Authors:  Xueting Jin; Denis Sviridov; Ying Liu; Boris Vaisman; Lia Addadi; Alan T Remaley; Howard S Kruth
Journal:  Arterioscler Thromb Vasc Biol       Date:  2016-10-06       Impact factor: 8.311

  7 in total

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