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Recessive Mutations in SYNPO2 as a Candidate of Monogenic Nephrotic Syndrome

INTRODUCTION: Most of the approximately 60 genes that if mutated cause steroid-resistant nephrotic syndrome (SRNS) are highly expressed in the glomerular podocyte, rendering SRNS a “podocytopathy.” METHODS: We performed whole-exome sequencing (WES) in 1200 nephrotic syndrome (NS) patients. RESULTS:...

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Autores principales: Mao, Youying, Schneider, Ronen, van der Ven, Peter F.M., Assent, Marvin, Lohanadan, Keerthika, Klämbt, Verena, Buerger, Florian, Kitzler, Thomas M., Deutsch, Konstantin, Nakayama, Makiko, Majmundar, Amar J., Mann, Nina, Hermle, Tobias, Onuchic-Whitford, Ana C., Zhou, Wei, Margam, Nandini Nagarajan, Duncan, Roy, Marquez, Jonathan, Khokha, Mustafa, Fathy, Hanan M., Kari, Jameela A., El Desoky, Sherif, Eid, Loai A., Awad, Hazem Subhi, Al-Saffar, Muna, Mane, Shrikant, Lifton, Richard P., Fürst, Dieter O., Shril, Shirlee, Hildebrandt, Friedhelm
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7879128/
https://www.ncbi.nlm.nih.gov/pubmed/33615072
http://dx.doi.org/10.1016/j.ekir.2020.10.040
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author Mao, Youying
Schneider, Ronen
van der Ven, Peter F.M.
Assent, Marvin
Lohanadan, Keerthika
Klämbt, Verena
Buerger, Florian
Kitzler, Thomas M.
Deutsch, Konstantin
Nakayama, Makiko
Majmundar, Amar J.
Mann, Nina
Hermle, Tobias
Onuchic-Whitford, Ana C.
Zhou, Wei
Margam, Nandini Nagarajan
Duncan, Roy
Marquez, Jonathan
Khokha, Mustafa
Fathy, Hanan M.
Kari, Jameela A.
El Desoky, Sherif
Eid, Loai A.
Awad, Hazem Subhi
Al-Saffar, Muna
Mane, Shrikant
Lifton, Richard P.
Fürst, Dieter O.
Shril, Shirlee
Hildebrandt, Friedhelm
author_facet Mao, Youying
Schneider, Ronen
van der Ven, Peter F.M.
Assent, Marvin
Lohanadan, Keerthika
Klämbt, Verena
Buerger, Florian
Kitzler, Thomas M.
Deutsch, Konstantin
Nakayama, Makiko
Majmundar, Amar J.
Mann, Nina
Hermle, Tobias
Onuchic-Whitford, Ana C.
Zhou, Wei
Margam, Nandini Nagarajan
Duncan, Roy
Marquez, Jonathan
Khokha, Mustafa
Fathy, Hanan M.
Kari, Jameela A.
El Desoky, Sherif
Eid, Loai A.
Awad, Hazem Subhi
Al-Saffar, Muna
Mane, Shrikant
Lifton, Richard P.
Fürst, Dieter O.
Shril, Shirlee
Hildebrandt, Friedhelm
author_sort Mao, Youying
collection PubMed
description INTRODUCTION: Most of the approximately 60 genes that if mutated cause steroid-resistant nephrotic syndrome (SRNS) are highly expressed in the glomerular podocyte, rendering SRNS a “podocytopathy.” METHODS: We performed whole-exome sequencing (WES) in 1200 nephrotic syndrome (NS) patients. RESULTS: We discovered homozygous truncating and homozygous missense mutation in SYNPO2 (synaptopodin-2) (p.Lys1124∗ and p.Ala1134Thr) in 2 patients with childhood-onset NS. We found SYNPO2 expression in both podocytes and mesangial cells; however, notably, immunofluorescence staining of adult human and rat kidney cryosections indicated that SYNPO2 is localized mainly in mesangial cells. Subcellular localization studies reveal that in these cells SYNPO2 partially co-localizes with α-actinin and filamin A−containing F-actin filaments. Upon transfection in mesangial cells or podocytes, EGFP-SYNPO2 co-localized with α-actinin-4, which gene is mutated in autosomal dominant SRNS in humans. SYNPO2 overexpression increases mesangial cell migration rate (MMR), whereas shRNA knockdown reduces MMR. Decreased MMR was rescued by transfection of wild-type mouse Synpo2 cDNA but only partially by cDNA representing mutations from the NS patients. The increased mesangial cell migration rate (MMR) by SYNPO2 overexpression was inhibited by ARP complex inhibitor CK666. SYNPO2 shRNA knockdown in podocytes decreased active Rac1, which was rescued by transfection of wild-type SYNPO2 cDNA but not by cDNA representing any of the 2 mutant variants. CONCLUSION: We show that SYNPO2 variants may lead to Rac1-ARP3 dysregulation, and may play a role in the pathogenesis of nephrotic syndrome.
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spelling pubmed-78791282021-02-18 Recessive Mutations in SYNPO2 as a Candidate of Monogenic Nephrotic Syndrome Mao, Youying Schneider, Ronen van der Ven, Peter F.M. Assent, Marvin Lohanadan, Keerthika Klämbt, Verena Buerger, Florian Kitzler, Thomas M. Deutsch, Konstantin Nakayama, Makiko Majmundar, Amar J. Mann, Nina Hermle, Tobias Onuchic-Whitford, Ana C. Zhou, Wei Margam, Nandini Nagarajan Duncan, Roy Marquez, Jonathan Khokha, Mustafa Fathy, Hanan M. Kari, Jameela A. El Desoky, Sherif Eid, Loai A. Awad, Hazem Subhi Al-Saffar, Muna Mane, Shrikant Lifton, Richard P. Fürst, Dieter O. Shril, Shirlee Hildebrandt, Friedhelm Kidney Int Rep Translational Research INTRODUCTION: Most of the approximately 60 genes that if mutated cause steroid-resistant nephrotic syndrome (SRNS) are highly expressed in the glomerular podocyte, rendering SRNS a “podocytopathy.” METHODS: We performed whole-exome sequencing (WES) in 1200 nephrotic syndrome (NS) patients. RESULTS: We discovered homozygous truncating and homozygous missense mutation in SYNPO2 (synaptopodin-2) (p.Lys1124∗ and p.Ala1134Thr) in 2 patients with childhood-onset NS. We found SYNPO2 expression in both podocytes and mesangial cells; however, notably, immunofluorescence staining of adult human and rat kidney cryosections indicated that SYNPO2 is localized mainly in mesangial cells. Subcellular localization studies reveal that in these cells SYNPO2 partially co-localizes with α-actinin and filamin A−containing F-actin filaments. Upon transfection in mesangial cells or podocytes, EGFP-SYNPO2 co-localized with α-actinin-4, which gene is mutated in autosomal dominant SRNS in humans. SYNPO2 overexpression increases mesangial cell migration rate (MMR), whereas shRNA knockdown reduces MMR. Decreased MMR was rescued by transfection of wild-type mouse Synpo2 cDNA but only partially by cDNA representing mutations from the NS patients. The increased mesangial cell migration rate (MMR) by SYNPO2 overexpression was inhibited by ARP complex inhibitor CK666. SYNPO2 shRNA knockdown in podocytes decreased active Rac1, which was rescued by transfection of wild-type SYNPO2 cDNA but not by cDNA representing any of the 2 mutant variants. CONCLUSION: We show that SYNPO2 variants may lead to Rac1-ARP3 dysregulation, and may play a role in the pathogenesis of nephrotic syndrome. Elsevier 2020-11-10 /pmc/articles/PMC7879128/ /pubmed/33615072 http://dx.doi.org/10.1016/j.ekir.2020.10.040 Text en © 2020 International Society of Nephrology. Published by Elsevier Inc. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Translational Research
Mao, Youying
Schneider, Ronen
van der Ven, Peter F.M.
Assent, Marvin
Lohanadan, Keerthika
Klämbt, Verena
Buerger, Florian
Kitzler, Thomas M.
Deutsch, Konstantin
Nakayama, Makiko
Majmundar, Amar J.
Mann, Nina
Hermle, Tobias
Onuchic-Whitford, Ana C.
Zhou, Wei
Margam, Nandini Nagarajan
Duncan, Roy
Marquez, Jonathan
Khokha, Mustafa
Fathy, Hanan M.
Kari, Jameela A.
El Desoky, Sherif
Eid, Loai A.
Awad, Hazem Subhi
Al-Saffar, Muna
Mane, Shrikant
Lifton, Richard P.
Fürst, Dieter O.
Shril, Shirlee
Hildebrandt, Friedhelm
Recessive Mutations in SYNPO2 as a Candidate of Monogenic Nephrotic Syndrome
title Recessive Mutations in SYNPO2 as a Candidate of Monogenic Nephrotic Syndrome
title_full Recessive Mutations in SYNPO2 as a Candidate of Monogenic Nephrotic Syndrome
title_fullStr Recessive Mutations in SYNPO2 as a Candidate of Monogenic Nephrotic Syndrome
title_full_unstemmed Recessive Mutations in SYNPO2 as a Candidate of Monogenic Nephrotic Syndrome
title_short Recessive Mutations in SYNPO2 as a Candidate of Monogenic Nephrotic Syndrome
title_sort recessive mutations in synpo2 as a candidate of monogenic nephrotic syndrome
topic Translational Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7879128/
https://www.ncbi.nlm.nih.gov/pubmed/33615072
http://dx.doi.org/10.1016/j.ekir.2020.10.040
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