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Article: TSPYL1 as a Critical Regulator of TGFβ Signaling through Repression of TGFBR1 and TSPYL2

TitleTSPYL1 as a Critical Regulator of TGFβ Signaling through Repression of TGFBR1 and TSPYL2
Authors
KeywordsFOXA1
nucleosome assembly protein
TGFBR1
TGFβ signaling
TSPYL1
TSPYL2
Issue Date8-Apr-2024
PublisherWiley-VCH
Citation
Advanced Science, 2024, v. 11, n. 21 How to Cite?
Abstract

Nucleosome assembly proteins (NAPs) have been identified as histone chaperons. Testis-Specific Protein, Y-Encoded-Like (TSPYL) is a newly arisen NAP family in mammals. TSPYL2 can be transcriptionally induced by DNA damage and TGFβ causing proliferation arrest. TSPYL1, another TSPYL family member, has been poorly characterized and is the only TSPYL family member known to be causal of a lethal recessive disease in humans. This study shows that TSPYL1 and TSPYL2 play an opposite role in TGFβ signaling. TSPYL1 partners with the transcription factor FOXA1 and histone methyltransferase EZH2, and at the same time represses TGFBR1 and epithelial-mesenchymal transition (EMT). Depletion of TSPYL1 increases TGFBR1 expression, upregulates TGFβ signaling, and elevates the protein stability of TSPYL2. Intriguingly, TSPYL2 forms part of the SMAD2/3/4 signal transduction complex upon stimulation by TGFβ to execute the transcriptional responses. Depletion of TSPYL2 rescues the EMT phenotype of TSPYL1 knockdown in A549 lung carcinoma cells. The data demonstrates the prime role of TSPYL2 in causing the dramatic defects in TSPYL1 deficiency. An intricate counter-balancing role of TSPYL1 and TSPYL2 in regulating TGFβ signaling is also unraveled.


Persistent Identifierhttp://hdl.handle.net/10722/343869
ISSN
2023 Impact Factor: 14.3
2023 SCImago Journal Rankings: 3.914

 

DC FieldValueLanguage
dc.contributor.authorTan, Huiqi-
dc.contributor.authorMiao, Mia Xinfang-
dc.contributor.authorLuo, Rylee Xu-
dc.contributor.authorSo, Joan-
dc.contributor.authorPeng, Lei-
dc.contributor.authorZhu, Xiaoxuan-
dc.contributor.authorLeung, Eva Hin Wa-
dc.contributor.authorZhu, Lina-
dc.contributor.authorChan, Kui Ming-
dc.contributor.authorCheung, Martin-
dc.contributor.authorChan, Siu Yuen-
dc.date.accessioned2024-06-13T08:14:51Z-
dc.date.available2024-06-13T08:14:51Z-
dc.date.issued2024-04-08-
dc.identifier.citationAdvanced Science, 2024, v. 11, n. 21-
dc.identifier.issn2198-3844-
dc.identifier.urihttp://hdl.handle.net/10722/343869-
dc.description.abstract<p>Nucleosome assembly proteins (NAPs) have been identified as histone chaperons. Testis-Specific Protein, Y-Encoded-Like (TSPYL) is a newly arisen NAP family in mammals. TSPYL2 can be transcriptionally induced by DNA damage and TGFβ causing proliferation arrest. TSPYL1, another TSPYL family member, has been poorly characterized and is the only TSPYL family member known to be causal of a lethal recessive disease in humans. This study shows that TSPYL1 and TSPYL2 play an opposite role in TGFβ signaling. TSPYL1 partners with the transcription factor FOXA1 and histone methyltransferase EZH2, and at the same time represses TGFBR1 and epithelial-mesenchymal transition (EMT). Depletion of TSPYL1 increases TGFBR1 expression, upregulates TGFβ signaling, and elevates the protein stability of TSPYL2. Intriguingly, TSPYL2 forms part of the SMAD2/3/4 signal transduction complex upon stimulation by TGFβ to execute the transcriptional responses. Depletion of TSPYL2 rescues the EMT phenotype of TSPYL1 knockdown in A549 lung carcinoma cells. The data demonstrates the prime role of TSPYL2 in causing the dramatic defects in TSPYL1 deficiency. An intricate counter-balancing role of TSPYL1 and TSPYL2 in regulating TGFβ signaling is also unraveled.<br></p>-
dc.languageeng-
dc.publisherWiley-VCH-
dc.relation.ispartofAdvanced Science-
dc.rightsThis work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.-
dc.subjectFOXA1-
dc.subjectnucleosome assembly protein-
dc.subjectTGFBR1-
dc.subjectTGFβ signaling-
dc.subjectTSPYL1-
dc.subjectTSPYL2-
dc.titleTSPYL1 as a Critical Regulator of TGFβ Signaling through Repression of TGFBR1 and TSPYL2-
dc.typeArticle-
dc.identifier.doi10.1002/advs.202306486-
dc.identifier.scopuseid_2-s2.0-85189660827-
dc.identifier.volume11-
dc.identifier.issue21-
dc.identifier.eissn2198-3844-
dc.identifier.issnl2198-3844-

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