Literature DB >> 30701361

Modulatory effects of fibronectin on calcium oxalate crystallization, growth, aggregation, adhesion on renal tubular cells, and invasion through extracellular matrix.

Supaporn Khamchun1, Kanyarat Sueksakit1, Sakdithep Chaiyarit1, Visith Thongboonkerd2.   

Abstract

Fibronectin, an extracellular matrix (ECM) protein, has been thought to be involved in pathogenic mechanisms of kidney stone disease, especially calcium oxalate (CaOx) type. Nevertheless, its precise roles in modulation of CaOx crystal remained unclear. We thus performed a systematic evaluation of effects of fibronectin on CaOx monohydrate (COM) crystal (the major causative chemical crystal in kidney stone formation) in various stages of kidney stone pathogenesis, including crystallization, crystal growth, aggregation, adhesion onto renal tubular cells, and invasion through ECM in renal interstitium. The data showed that fibronectin significantly decreased crystallization, growth and adhesive capability of COM crystals in a dose-dependent manner. In contrast, COM crystal aggregation and invasion through ECM migration chamber were significantly enhanced by fibronectin in a dose-dependent fashion. Sequence analysis revealed three calcium-binding and six oxalate-binding domains in fibronectin. Immunofluorescence study confirmed binding of fibronectin to COM crystals. Additionally, calcium- and oxalate-affinity assays confirmed depletion of both calcium and oxalate ions after incubation with fibronectin. Moreover, calcium-saturated and oxalate-saturated forms of fibronectin markedly reduced the modulatory activities of fibronectin on COM crystallization, crystal growth, aggregation, and adhesion onto the cells. These data strongly indicate the dual functions of fibronectin, which serves as an inhibitor for COM crystallization, crystal growth and adhesion onto renal tubular cells, but on the other hand, acts as a promoter for COM crystal aggregation and invasion through ECM. Finally, its COM crystal modulatory activities are most likely mediated through binding with calcium and oxalate ions on the crystals and in their environment.

Entities:  

Keywords:  Inhibitor; Kidney stone; Modulator; Promoter; Renal interstitium; Urine

Mesh:

Substances:

Year:  2019        PMID: 30701361     DOI: 10.1007/s00775-019-01641-w

Source DB:  PubMed          Journal:  J Biol Inorg Chem        ISSN: 0949-8257            Impact factor:   3.358


  40 in total

1.  Fibronectin as a potent inhibitor of calcium oxalate urolithiasis.

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Journal:  J Urol       Date:  2000-11       Impact factor: 7.450

2.  Urine protein markers distinguish stone-forming from non-stone-forming relatives of calcium stone formers.

Authors:  Kristin J Bergsland; Jennifer K Kelly; Brian J Coe; Fredric L Coe
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Review 3.  Fibronectin at a glance.

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Journal:  Clin Rev Bone Miner Metab       Date:  2011-12

5.  Role of connective tissue growth factor in fibronectin expression and tubulointerstitial fibrosis.

Authors:  Hideki Yokoi; Masashi Mukoyama; Akira Sugawara; Kiyoshi Mori; Tetsuya Nagae; Hisashi Makino; Takayoshi Suganami; Kensei Yahata; Yuriko Fujinaga; Issei Tanaka; Kazuwa Nakao
Journal:  Am J Physiol Renal Physiol       Date:  2002-05

Review 6.  Osteopontin: a multifunctional molecule regulating chronic inflammation and vascular disease.

Authors:  Marta Scatena; Lucy Liaw; Cecilia M Giachelli
Journal:  Arterioscler Thromb Vasc Biol       Date:  2007-08-23       Impact factor: 8.311

Review 7.  Fibronectin fibrillogenesis, a cell-mediated matrix assembly process.

Authors:  Yong Mao; Jean E Schwarzbauer
Journal:  Matrix Biol       Date:  2005-09       Impact factor: 11.583

8.  Isolation and characterizations of oxalate-binding proteins in the kidney.

Authors:  Piyachat Roop-ngam; Sakdithep Chaiyarit; Nutkridta Pongsakul; Visith Thongboonkerd
Journal:  Biochem Biophys Res Commun       Date:  2012-07-14       Impact factor: 3.575

9.  Plasma and cellular fibronectin: distinct and independent functions during tissue repair.

Authors:  Wing S To; Kim S Midwood
Journal:  Fibrogenesis Tissue Repair       Date:  2011-09-16

10.  More complete polarization of renal tubular epithelial cells by artificial urine.

Authors:  Arada Vinaiphat; Komgrid Charngkaew; Visith Thongboonkerd
Journal:  Cell Death Discov       Date:  2018-10-10
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  6 in total

1.  Protective effects of finasteride against testosterone-induced calcium oxalate crystallization and crystal-cell adhesion.

Authors:  Kanyarat Sueksakit; Visith Thongboonkerd
Journal:  J Biol Inorg Chem       Date:  2019-07-24       Impact factor: 3.358

2.  Evolution of Biomineralization Genes in the Prismatic Layer of the Pen Shell Atrina pectinata.

Authors:  Keisuke Shimizu; Hiroyuki Kintsu; Masahiko Awaji; Toshie Matumoto; Michio Suzuki
Journal:  J Mol Evol       Date:  2020-11-24       Impact factor: 2.395

3.  Optimizing Decellularization Strategies for the Efficient Production of Whole Rat Kidney Scaffolds.

Authors:  Panagiotis Mallis; Charalampos Oikonomidis; Zetta Dimou; Catherine Stavropoulos-Giokas; Efstathios Michalopoulos; Michalis Katsimpoulas
Journal:  Tissue Eng Regen Med       Date:  2021-05-20       Impact factor: 4.169

4.  Flagellum Is Responsible for Promoting Effects of Viable Escherichia coli on Calcium Oxalate Crystallization, Crystal Growth, and Crystal Aggregation.

Authors:  Rattiyaporn Kanlaya; Orapan Naruepantawart; Visith Thongboonkerd
Journal:  Front Microbiol       Date:  2019-11-05       Impact factor: 5.640

5.  Regulation of Laminaria Polysaccharides with Different Degrees of Sulfation during the Growth of Calcium Oxalate Crystals and their Protective Effects on Renal Epithelial Cells.

Authors:  Wei-Bo Huang; Guo-Jun Zou; Gu-Hua Tang; Xin-Yuan Sun; Jian-Ming Ouyang
Journal:  Oxid Med Cell Longev       Date:  2021-08-26       Impact factor: 6.543

6.  Roles of heat-shock protein 90 and its four domains (N, LR, M and C) in calcium oxalate stone-forming processes.

Authors:  Sunisa Yoodee; Paleerath Peerapen; Sirikanya Plumworasawat; Visith Thongboonkerd
Journal:  Cell Mol Life Sci       Date:  2022-07-28       Impact factor: 9.207

  6 in total

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