β1 Integrin NPXY Motifs Regulate Kidney Collecting-Duct Development and Maintenance by Induced-Fit Interactions with Cytosolic Proteins

Author:

Mathew Sijo1,Lu Zhenwei2,Palamuttam Riya J.1,Mernaugh Glenda1,Hadziselimovic Arina2,Chen Jiang2,Bulus Nada1,Gewin Leslie S.13,Voehler Markus2,Meves Alexander4,Ballestrem Christoph5,Fässler Reinhard4,Pozzi Ambra163,Sanders Charles R.278,Zent Roy16973

Affiliation:

1. Division of Nephrology and Hypertension, Department of Medicine, Vanderbilt University School of Medicine, Nashville, Tennessee, USA

2. Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee, USA

3. Veterans Affairs Hospital, Nashville, Tennessee, USA

4. Department of Molecular Medicine, Max Planck Institute of Biochemistry, Martinsried, Germany

5. Department of Biochemistry and Department of Medicine, Division of Nephrology, Faculty of Life Sciences, University of Manchester, Manchester, England

6. Department of Cancer Biology, Vanderbilt University School of Medicine, Nashville, Tennessee, USA

7. Center for Matrix Biology, Vanderbilt University School of Medicine, Nashville, Tennessee, USA

8. Center for Structural Biology, Vanderbilt University School of Medicine, Nashville, Tennessee, USA

9. Department of Cell and Developmental Biology, Vanderbilt University School of Medicine, Nashville, Tennessee, USA

Abstract

ABSTRACT Loss of β1 integrin expression inhibits renal collecting-system development. Two highly conserved NPXY motifs in the distal β1 tail regulate integrin function by associating with phosphtyrosine binding (PTB) proteins, such as talin and kindlin. Here, we define the roles of these two tyrosines in collecting-system development and delineate the structural determinants of the distal β1 tail using nuclear magnetic resonance (NMR). Mice carrying alanine mutations have moderate renal collecting-system developmental abnormalities relative to β1-null mice. Phenylalanine mutations did not affect renal collecting-system development but increased susceptibility to renal injury. NMR spectra in bicelles showed the distal β1 tail is disordered and does not interact with the model membrane surface. Alanine or phenylalanine mutations did not alter β1 structure or interactions between α and β1 subunit transmembrane/cytoplasmic domains; however, they did decrease talin and kindlin binding. Thus, these studies highlight the fact that the functional roles of the NPXY motifs are organ dependent. Moreover, the β1 cytoplasmic tail, in the context of the adjacent transmembrane domain in bicelles, is significantly different from the more ordered, membrane-associated β3 integrin tail. Finally, tyrosine mutations of β1 NPXY motifs induce phenotypes by disrupting their interactions with critical integrin binding proteins like talins and kindlins.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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