Paracellin-1, a Renal Tight Junction Protein Required for Paracellular Mg 2+ Resorption

Author:

Simon David B.12,Lu Yin12,Choate Keith A.12,Velazquez Heino2,Al-Sabban Essam3,Praga Manuel4,Casari Giorgio5,Bettinelli Alberto6,Colussi Giacomo7,Rodriguez-Soriano Juan8,McCredie David9,Milford David10,Sanjad Sami11,Lifton Richard P.12

Affiliation:

1. Howard Hughes Medical Institute, Department of Genetics,

2. Department of Medicine, Yale University School of Medicine, New Haven, CT 06510, USA.

3. Department of Pediatrics, King Faisal Specialist Hospital and Research Center, Riyadh, Saudi Arabia.

4. Servicio de Nefrologia, Hospital 12 de Octubre, Madrid, Spain.

5. Telethon Institute of Genetics and Medicine, Milan 20132, Italy.

6. Department of Pediatrics II, University of Milan, Milan, Italy.

7. Renal Division, Niguarda “Ca' Granda” Hospital, Milan, Italy.

8. Department of Pediatrics, Hospital de Cruces, Baracaldo E-48903, Spain.

9. Department of Nephrology, Royal Children's Hospital, Flemington Road, Parkville, Victoria 3052, Australia.

10. Department of Nephrology, Birmingham Children's Hospital, Birmingham B16 8ET, UK.

11. Department of Pediatrics, American University, Beirut, Lebanon.

Abstract

Epithelia permit selective and regulated flux from apical to basolateral surfaces by transcellular passage through cells or paracellular flux between cells. Tight junctions constitute the barrier to paracellular conductance; however, little is known about the specific molecules that mediate paracellular permeabilities. Renal magnesium ion (Mg 2+ ) resorption occurs predominantly through a paracellular conductance in the thick ascending limb of Henle (TAL). Here, positional cloning has identified a human gene, paracellin-1 ( PCLN-1 ), mutations in which cause renal Mg 2+ wasting. PCLN-1 is located in tight junctions of the TAL and is related to the claudin family of tight junction proteins. These findings provide insight into Mg 2+ homeostasis, demonstrate the role of a tight junction protein in human disease, and identify an essential component of a selective paracellular conductance.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference41 articles.

1. Bonnet R., Dtsch. Med. Wochenschr. 21, 58 (1895);

2. JUNCTIONAL COMPLEXES IN VARIOUS EPITHELIA

3. Anderson J. M., Van Itallie C. M., Am. J. Physiol. 32, G467 (1995).

4. REGULATION OF THE MOVEMENT OF SOLUTES ACROSS TIGHT JUNCTIONS

5. L. L. Mitic and J. M. Anderson ibid. p. 121.

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