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Laminin β2 variants associated with isolated nephropathy that impact matrix regulation
Yamato Kikkawa, Taeko Hashimoto, Keiichi Takizawa, Seiya Urae, Haruka Masuda, Masumi Matsunuma, Yuji Yamada, Keisuke Hamada, Motoyoshi Nomizu, Helen Liapis, Masataka Hisano, Yuko Akioka, Kenichiro Miura, Motoshi Hattori, Jeffrey H. Miner, Yutaka Harita
Yamato Kikkawa, Taeko Hashimoto, Keiichi Takizawa, Seiya Urae, Haruka Masuda, Masumi Matsunuma, Yuji Yamada, Keisuke Hamada, Motoyoshi Nomizu, Helen Liapis, Masataka Hisano, Yuko Akioka, Kenichiro Miura, Motoshi Hattori, Jeffrey H. Miner, Yutaka Harita
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Research Article Cell biology Nephrology

Laminin β2 variants associated with isolated nephropathy that impact matrix regulation

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Abstract

Mutations in LAMB2, encoding laminin β2, cause Pierson syndrome and occasionally milder nephropathy without extrarenal abnormalities. The most deleterious missense mutations that have been identified affect primarily the N-terminus of laminin β2. On the other hand, those associated with isolated nephropathy are distributed across the entire molecule, and variants in the β2 LEa-LF-LEb domains are exclusively found in cases with isolated nephropathy. Here we report the clinical features of mild isolated nephropathy associated with 3 LAMB2 variants in the LEa-LF-LEb domains (p.R469Q, p.G699R, and p.R1078C) and their biochemical characterization. Although Pierson syndrome missense mutations often inhibit laminin β2 secretion, the 3 recombinant variants were secreted as efficiently as WT. However, the β2 variants lost pH dependency for heparin binding, resulting in aberrant binding under physiologic conditions. This suggests that the binding of laminin β2 to negatively charged molecules is involved in glomerular basement membrane (GBM) permselectivity. Moreover, the excessive binding of the β2 variants to other laminins appears to lead to their increased deposition in the GBM. Laminin β2 also serves as a potentially novel cell-adhesive ligand for integrin α4β1. Our findings define biochemical functions of laminin β2 variants influencing glomerular filtration that may underlie the pathogenesis of isolated nephropathy caused by LAMB2 abnormalities.

Authors

Yamato Kikkawa, Taeko Hashimoto, Keiichi Takizawa, Seiya Urae, Haruka Masuda, Masumi Matsunuma, Yuji Yamada, Keisuke Hamada, Motoyoshi Nomizu, Helen Liapis, Masataka Hisano, Yuko Akioka, Kenichiro Miura, Motoshi Hattori, Jeffrey H. Miner, Yutaka Harita

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Figure 4

Characterization of heparin binding to the laminin β2 short arm.

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Characterization of heparin binding to the laminin β2 short arm.
(A) Sch...
(A) Schematic diagrams of truncated laminin β1 and β2 short arms fused with an Fc-tag. (B) SDS-PAGE analysis of B1SA_Fc (β1 short arm, lane 1), B1LN-LEa_Fc (lane 2), B2SA_Fc (β2 short arm, lane 3), and B2LN-LEa _Fc (lane 4). (C) Heparin binding of β chain LN-LEa domains in 10 mM Tris-HCl (pH 7.5). Ninety-six-well microtiter plates were coated with 10 μg/mL of recombinant proteins. After blocking, 10 μg/mL of biotinylated heparin was applied to the wells and incubated for 1 hour at room temperature. The bound heparin was detected as described in Methods. Box-and-whisker plots show median, 25th and 75th percentiles, and minimum and maximum values (n = 6 from 3 independent experiments). Data were analyzed by 1-way ANOVA with Tukey’s multiple-comparison test, *P < 0.001. (D) The binding of heparin to whole laminin containing β2 chain in 10 mM Tris-HCl (pH 7.5), without (left panel) or with 150 mM (right panel) NaCl. Ninety-six-well microtiter plates were coated with laminin-111 (LM111), laminin-511 (LM511), and laminin-521 (LM521) at 10 μg/mL. Data were analyzed by 1-way ANOVA with Tukey’s multiple-comparison test, *P < 0.001 and are shown as box-and-whisker plots (n = 6 from 3 independent experiments).

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