Literature DB >> 26771163

Regulation of VWF expression, and secretion in health and disease.

Yaozu Xiang1, John Hwa.   

Abstract

PURPOSE OF REVIEW: Von Willebrand factor (VWF) is a large multidomain, multimeric glycoprotein that plays an essential role in regulating the balance between blood clotting and bleeding. Aberrant VWF regulation can lead to a spectrum of diseases extending from bleeding disorders [Von Willebrand disease (VWD)] to aberrant thrombotic thrombocytopenic purpura (TTP). Understanding the biology of VWF expression and secretion is essential for developing novel targeted therapies for VWF-related hemostasis disorders. RECENT
FINDINGS: A number of recent elegant in-vitro and in-vivo studies will be highlighted, including the discovery of intronic splicing in the VWF gene, microRNA-regulated VWF gene expression, and syntaxin binding protein and autophagy mediated VWF secretion. Compared with the already established critical role of VWF in VWD and TTP pathophysiology, additional clinical studies have clarified and reinforced the association of elevated plasma levels of VWF with an increased risk of stroke, myocardial infarction, venous thrombosis, and diabetic thrombotic complications. Moreover, experimental mouse models of ischemic stroke and myocardial infarction have further supported VWF as a potential therapeutic target.
SUMMARY: VWF biosynthesis, maturation, and secretion is a complex process, which mandates tight regulation. Significant progress has been made in our understandings of VWF expression and secretion and its association with thrombotic diseases, contributing to the development of novel targeting VWF drugs for prevention and treatment of deficient and enhanced hemostasis.

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Year:  2016        PMID: 26771163      PMCID: PMC5209751          DOI: 10.1097/MOH.0000000000000230

Source DB:  PubMed          Journal:  Curr Opin Hematol        ISSN: 1065-6251            Impact factor:   3.284


  62 in total

1.  Shear-dependent tether formation during platelet translocation on von Willebrand factor.

Authors:  Sacha M Dopheide; Mhairi J Maxwell; Shaun P Jackson
Journal:  Blood       Date:  2002-01-01       Impact factor: 22.113

2.  ADAMTS13 and von Willebrand factor and the risk of myocardial infarction in men.

Authors:  Chan K N K Chion; Carine J M Doggen; James T B Crawley; David A Lane; Frits R Rosendaal
Journal:  Blood       Date:  2006-10-19       Impact factor: 22.113

Review 3.  Plasma ADAMTS-13 levels and the risk of myocardial infarction: an individual patient data meta-analysis.

Authors:  A Maino; B Siegerink; L A Lotta; J T B Crawley; S le Cessie; F W G Leebeek; D A Lane; G D O Lowe; F Peyvandi; F R Rosendaal
Journal:  J Thromb Haemost       Date:  2015-07-14       Impact factor: 5.824

4.  Cell type-specific regulation of von Willebrand factor expression by the E4BP4 transcriptional repressor.

Authors:  Christine Hough; Carla D Cuthbert; Colleen Notley; Christine Brown; Carol Hegadorn; Ergul Berber; David Lillicrap
Journal:  Blood       Date:  2004-10-21       Impact factor: 22.113

5.  Platelet-derived VWF is not essential for normal thrombosis and hemostasis but fosters ischemic stroke injury in mice.

Authors:  Sebastien Verhenne; Frederik Denorme; Sarah Libbrecht; Aline Vandenbulcke; Inge Pareyn; Hans Deckmyn; Antoon Lambrecht; Bernhard Nieswandt; Christoph Kleinschnitz; Karen Vanhoorelbeke; Simon F De Meyer
Journal:  Blood       Date:  2015-07-24       Impact factor: 22.113

6.  A +220 GATA motif mediates basal but not endotoxin-repressible expression of the von Willebrand factor promoter in Hprt-targeted transgenic mice.

Authors:  J Liu; Y Kanki; Y Okada; E Jin; K Yano; S-C Shih; T Minami; W C Aird
Journal:  J Thromb Haemost       Date:  2009-05-30       Impact factor: 5.824

7.  von Willebrand factor-cleaving protease ADAMTS13 reduces ischemic brain injury in experimental stroke.

Authors:  Bing-Qiao Zhao; Anil K Chauhan; Matthias Canault; Ian S Patten; Janie J Yang; Michael Dockal; Friedrich Scheiflinger; Denisa D Wagner
Journal:  Blood       Date:  2009-08-17       Impact factor: 22.113

8.  Syntaxin-binding protein 5 exocytosis regulation: differential role in endothelial cells and platelets.

Authors:  David Lillicrap
Journal:  J Clin Invest       Date:  2014-09-17       Impact factor: 14.808

Review 9.  Biochemistry and genetics of von Willebrand factor.

Authors:  J E Sadler
Journal:  Annu Rev Biochem       Date:  1998       Impact factor: 23.643

10.  ADAMTS13 activity to antigen ratio in physiological and pathological conditions associated with an increased risk of thrombosis.

Authors:  Hendrik B Feys; Maria T Canciani; Flora Peyvandi; Hans Deckmyn; Karen Vanhoorelbeke; Pier M Mannucci
Journal:  Br J Haematol       Date:  2007-06-29       Impact factor: 6.998

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1.  Endothelial alterations in a canine model of immune thrombocytopenia.

Authors:  Dana N LeVine; Rachel E Cianciolo; Keith E Linder; Petra Bizikova; Adam J Birkenheuer; Marjory B Brooks; Abdelghaffar K Salous; Shila K Nordone; Dwight A Bellinger; Henry Marr; Sam L Jones; Thomas H Fischer; Yu Deng; Marshall Mazepa; Nigel S Key
Journal:  Platelets       Date:  2017-11-28       Impact factor: 3.862

2.  α-galactosidase A deficiency promotes von Willebrand factor secretion in models of Fabry disease.

Authors:  Justin J Kang; Nayiri M Kaissarian; Karl C Desch; Robert J Kelly; Liming Shu; Peter F Bodary; James A Shayman
Journal:  Kidney Int       Date:  2018-11-22       Impact factor: 10.612

3.  The Identification of Childhood Asthma Progression-Related lncRNAs and mRNAs Suitable as Biomarkers Using Weighted Gene Coexpression Network Analysis.

Authors:  Min Hao; Jinling Zan
Journal:  Genet Res (Camb)       Date:  2021-07-27       Impact factor: 1.588

4.  Migraine and subclinical atherosclerosis: endothelial dysfunction biomarkers and carotid intima-media thickness: a case-control study.

Authors:  Aynur Yilmaz Avci; Mehmet Husamettin Akkucuk; Ebru Torun; Serap Arikan; Ufuk Can; Mustafa Agah Tekindal
Journal:  Neurol Sci       Date:  2019-01-15       Impact factor: 3.307

5.  Using Integrated Bioinformatics Analysis to Identify Abnormally Methylated Differentially Expressed Genes in Hepatocellular Carcinoma.

Authors:  Qing-Lian Chen; Qian Yan; Kun-Liang Feng; Chun-Feng Xie; Chong-Kai Fang; Ji-Nan Wang; Li-Hua Liu; Ya Li; Chong Zhong
Journal:  Int J Gen Med       Date:  2021-03-10

Review 6.  Coagulation in Lymphatic System.

Authors:  Wendi Zhang; Jiang Li; Jiangjiu Liang; Xiumei Qi; Jinghui Tian; Ju Liu
Journal:  Front Cardiovasc Med       Date:  2021-11-24

7.  Establishing reference intervals for von Willebrand factor multimers.

Authors:  Marika Pikta; Marc Vasse; Kristi J Smock; Karen A Moser; Dievoet Marie-Astrid van; Sandra Lejniece; Timea Szanto; Hector Bautista; George Nouadje; Valdas Banys
Journal:  J Med Biochem       Date:  2022-02-02       Impact factor: 3.402

8.  Hypergravity Activates a Pro-Angiogenic Homeostatic Response by Human Capillary Endothelial Cells.

Authors:  Chiara De Cesari; Ivana Barravecchia; Olga V Pyankova; Matteo Vezza; Marco M Germani; Francesca Scebba; Jack J W A van Loon; Debora Angeloni
Journal:  Int J Mol Sci       Date:  2020-03-28       Impact factor: 5.923

Review 9.  Thrombocytopathy and endotheliopathy: crucial contributors to COVID-19 thromboinflammation.

Authors:  Sean X Gu; Tarun Tyagi; Kanika Jain; Vivian W Gu; Seung Hee Lee; Jonathan M Hwa; Jennifer M Kwan; Diane S Krause; Alfred I Lee; Stephanie Halene; Kathleen A Martin; Hyung J Chun; John Hwa
Journal:  Nat Rev Cardiol       Date:  2020-11-19       Impact factor: 32.419

10.  Acrolein Induces Systemic Coagulopathy via Autophagy-dependent Secretion of von Willebrand Factor in Mice after Traumatic Brain Injury.

Authors:  Wenxing Cui; Xun Wu; Dayun Feng; Jianing Luo; Yingwu Shi; Wei Guo; Haixiao Liu; Qiang Wang; Liang Wang; Shunnan Ge; Yan Qu
Journal:  Neurosci Bull       Date:  2021-05-03       Impact factor: 5.203

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