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Scaffold protein SH3BP2 signalosome is pivotal for immune activation in nephrotic syndrome
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Despite clinical use of immunosuppressive agents, the immunopathogenesis of minimal change disease (MCD) and focal segmental glomerulosclerosis (FSGS) remains unclear. Src homology 3-binding protein 2 (SH3BP2), a scaffold protein, forms an immune signaling complex (signalosome) with 17 other proteins, including phospholipase Cγ2 (PLCγ2) and Rho-guanine nucleotide exchange factor VAV2 (VAV2). Bioinformatic analysis of human glomerular transcriptome (Nephrotic Syndrome Study Network cohort) revealed upregulated
SH3BP2
in MCD and FSGS. The SH3BP2 signalosome score and downstream
MyD88
,
TRIF
, and
NFATc1
were significantly upregulated in MCD and FSGS. Immune pathway activation scores for Toll-like receptors, cytokine-cytokine receptor, and NOD-like receptors were increased in FSGS. Lower SH3BP2 signalosome score was associated with MCD, higher estimated glomerular filtration rate, and remission. Further work using
Sh3bp2
KI/KI
transgenic mice with a gain-in-function mutation showed ~6-fold and ~25-fold increases in albuminuria at 4 and 12 weeks, respectively. Decreased serum albumin and unchanged serum creatinine were observed at 12 weeks.
Sh3bp2
KI/KI
kidney morphology appeared normal except for increased mesangial cellularity and patchy foot process fusion without electron-dense deposits. SH3BP2 co-immunoprecipitated with PLCγ2 and VAV2 in human podocytes, underscoring the importance of SH3BP2 in immune activation. SH3BP2 and its binding partners may determine the immune activation pathways resulting in podocyte injury leading to loss of the glomerular filtration barrier.
American Society for Clinical Investigation
Tarak Srivastava
Robert E. Garola
Jianping Zhou
Varun C. Boinpelly
Mohammad H. Rezaiekhaligh
Trupti Joshi
Yuexu Jiang
Diba Ebadi
Siddarth Sharma
Christine Sethna
Vincent S. Staggs
Ram Sharma
Debbie S. Gipson
Wei Hao
Yujie Wang
Laura H. Mariani
Jeffrey B. Hodgin
Robert Rottapel
Teruhito Yoshitaka
Yasuyoshi Ueki
Mukut Sharma
Title: Scaffold protein SH3BP2 signalosome is pivotal for immune activation in nephrotic syndrome
Description:
Despite clinical use of immunosuppressive agents, the immunopathogenesis of minimal change disease (MCD) and focal segmental glomerulosclerosis (FSGS) remains unclear.
Src homology 3-binding protein 2 (SH3BP2), a scaffold protein, forms an immune signaling complex (signalosome) with 17 other proteins, including phospholipase Cγ2 (PLCγ2) and Rho-guanine nucleotide exchange factor VAV2 (VAV2).
Bioinformatic analysis of human glomerular transcriptome (Nephrotic Syndrome Study Network cohort) revealed upregulated
SH3BP2
in MCD and FSGS.
The SH3BP2 signalosome score and downstream
MyD88
,
TRIF
, and
NFATc1
were significantly upregulated in MCD and FSGS.
Immune pathway activation scores for Toll-like receptors, cytokine-cytokine receptor, and NOD-like receptors were increased in FSGS.
Lower SH3BP2 signalosome score was associated with MCD, higher estimated glomerular filtration rate, and remission.
Further work using
Sh3bp2
KI/KI
transgenic mice with a gain-in-function mutation showed ~6-fold and ~25-fold increases in albuminuria at 4 and 12 weeks, respectively.
Decreased serum albumin and unchanged serum creatinine were observed at 12 weeks.
Sh3bp2
KI/KI
kidney morphology appeared normal except for increased mesangial cellularity and patchy foot process fusion without electron-dense deposits.
SH3BP2 co-immunoprecipitated with PLCγ2 and VAV2 in human podocytes, underscoring the importance of SH3BP2 in immune activation.
SH3BP2 and its binding partners may determine the immune activation pathways resulting in podocyte injury leading to loss of the glomerular filtration barrier.
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