Prolyl isomerization of FAAP20 catalyzed by PIN1 regulates the Fanconi anemia pathway.

The Fanconi Anemia (FA) pathway is a multi-step DNA repair process at stalled replication forks in response to DNA interstrand cross-links (ICLs). Pathological mutation of key FA genes leads to the inherited disorder FA, characterized by progressive bone marrow failure and cancer predisposition. The...

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Main Authors: Jingming Wang, Bryan Chan, Michael Tong, YiTing Paung, Ukhyun Jo, Dwight Martin, Markus Seeliger, John Haley, Hyungjin Kim
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-02-01
Series:PLoS Genetics
Online Access:https://doi.org/10.1371/journal.pgen.1007983
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spelling doaj-c3338ef888cd45aeb41e6e2bac3d7a8d2021-06-19T04:31:41ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042019-02-01152e100798310.1371/journal.pgen.1007983Prolyl isomerization of FAAP20 catalyzed by PIN1 regulates the Fanconi anemia pathway.Jingming WangBryan ChanMichael TongYiTing PaungUkhyun JoDwight MartinMarkus SeeligerJohn HaleyHyungjin KimThe Fanconi Anemia (FA) pathway is a multi-step DNA repair process at stalled replication forks in response to DNA interstrand cross-links (ICLs). Pathological mutation of key FA genes leads to the inherited disorder FA, characterized by progressive bone marrow failure and cancer predisposition. The study of FA is of great importance not only to children suffering from FA but also as a model to study cancer pathogenesis in light of genome instability among the general population. FANCD2 monoubiquitination by the FA core complex is an essential gateway that connects upstream DNA damage signaling to enzymatic steps of repair. FAAP20 is a key component of the FA core complex, and regulated proteolysis of FAAP20 mediated by the ubiquitin E3 ligase SCFFBW7 is critical for maintaining the integrity of the FA complex and FA pathway signaling. However, upstream regulatory mechanisms that govern this signaling remain unclear. Here, we show that PIN1, a phosphorylation-specific prolyl isomerase, regulates the integrity of the FA core complex, thus FA pathway activation. We demonstrate that PIN1 catalyzes cis-trans isomerization of the FAAP20 pSer48-Pro49 motif and promotes FAAP20 stability. Mechanistically, PIN1-induced conformational change of FAAP20 enhances its interaction with the PP2A phosphatase to counteract SCFFBW7-dependent proteolytic signaling at the phosphorylated degron motif. Accordingly, PIN1 deficiency impairs FANCD2 activation and the DNA ICL repair process. Together, our study establishes PIN1-dependent prolyl isomerization as a new regulator of the FA pathway and genomic integrity.https://doi.org/10.1371/journal.pgen.1007983
collection DOAJ
language English
format Article
sources DOAJ
author Jingming Wang
Bryan Chan
Michael Tong
YiTing Paung
Ukhyun Jo
Dwight Martin
Markus Seeliger
John Haley
Hyungjin Kim
spellingShingle Jingming Wang
Bryan Chan
Michael Tong
YiTing Paung
Ukhyun Jo
Dwight Martin
Markus Seeliger
John Haley
Hyungjin Kim
Prolyl isomerization of FAAP20 catalyzed by PIN1 regulates the Fanconi anemia pathway.
PLoS Genetics
author_facet Jingming Wang
Bryan Chan
Michael Tong
YiTing Paung
Ukhyun Jo
Dwight Martin
Markus Seeliger
John Haley
Hyungjin Kim
author_sort Jingming Wang
title Prolyl isomerization of FAAP20 catalyzed by PIN1 regulates the Fanconi anemia pathway.
title_short Prolyl isomerization of FAAP20 catalyzed by PIN1 regulates the Fanconi anemia pathway.
title_full Prolyl isomerization of FAAP20 catalyzed by PIN1 regulates the Fanconi anemia pathway.
title_fullStr Prolyl isomerization of FAAP20 catalyzed by PIN1 regulates the Fanconi anemia pathway.
title_full_unstemmed Prolyl isomerization of FAAP20 catalyzed by PIN1 regulates the Fanconi anemia pathway.
title_sort prolyl isomerization of faap20 catalyzed by pin1 regulates the fanconi anemia pathway.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2019-02-01
description The Fanconi Anemia (FA) pathway is a multi-step DNA repair process at stalled replication forks in response to DNA interstrand cross-links (ICLs). Pathological mutation of key FA genes leads to the inherited disorder FA, characterized by progressive bone marrow failure and cancer predisposition. The study of FA is of great importance not only to children suffering from FA but also as a model to study cancer pathogenesis in light of genome instability among the general population. FANCD2 monoubiquitination by the FA core complex is an essential gateway that connects upstream DNA damage signaling to enzymatic steps of repair. FAAP20 is a key component of the FA core complex, and regulated proteolysis of FAAP20 mediated by the ubiquitin E3 ligase SCFFBW7 is critical for maintaining the integrity of the FA complex and FA pathway signaling. However, upstream regulatory mechanisms that govern this signaling remain unclear. Here, we show that PIN1, a phosphorylation-specific prolyl isomerase, regulates the integrity of the FA core complex, thus FA pathway activation. We demonstrate that PIN1 catalyzes cis-trans isomerization of the FAAP20 pSer48-Pro49 motif and promotes FAAP20 stability. Mechanistically, PIN1-induced conformational change of FAAP20 enhances its interaction with the PP2A phosphatase to counteract SCFFBW7-dependent proteolytic signaling at the phosphorylated degron motif. Accordingly, PIN1 deficiency impairs FANCD2 activation and the DNA ICL repair process. Together, our study establishes PIN1-dependent prolyl isomerization as a new regulator of the FA pathway and genomic integrity.
url https://doi.org/10.1371/journal.pgen.1007983
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