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Palmdelphin Regulates Nuclear Resilience to Mechanical Stress in the Endothelium

Sainz-Jaspeado, Miguel (author)
Uppsala universitet,Vaskulärbiologi,Science for Life Laboratory, SciLifeLab
Smith, Ross O. (author)
Uppsala universitet,Science for Life Laboratory, SciLifeLab,Vaskulärbiologi
Plunde, Oscar (author)
Karolinska Institutet
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Pawelzik, Sven-Christian (author)
Karolinska Institutet
Jin, Yi (author)
Uppsala universitet,Vaskulärbiologi,Science for Life Laboratory, SciLifeLab
Nordling, Sofia, 1985- (author)
Uppsala universitet,Vaskulärbiologi,Science for Life Laboratory, SciLifeLab
Ding, Yindi (author)
Uppsala universitet,Science for Life Laboratory, SciLifeLab,Vaskulärbiologi
Aspenström, Pontus (author)
Uppsala universitet,Vaskulärbiologi,Science for Life Laboratory, SciLifeLab
Hedlund, Marie (author)
Uppsala universitet,Science for Life Laboratory, SciLifeLab,Vaskulärbiologi
Bastianello, Giulia (author)
Fdn Italiana Ric Sul Canc, IFOM FIRC, Inst Mol Oncol, Milan, Italy.;Univ Milan, Milan, Italy.
Ascione, Flora (author)
Fdn Italiana Ric Sul Canc, IFOM FIRC, Inst Mol Oncol, Milan, Italy.
Li, Qingsen (author)
Fdn Italiana Ric Sul Canc, IFOM FIRC, Inst Mol Oncol, Milan, Italy.
Demir, Cansaran Saygili (author)
Univ Lausanne, Dept Oncol, Lausanne, Switzerland.;Ludwig Inst Canc Res Lausanne, Lausanne, Switzerland.
Fernando, Dinesh (author)
Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Skogens biomaterial och teknologi,Department of Forest Biomaterials and Technology
Daniel, Geoffrey (author)
Swedish University of Agricultural Sciences,Sveriges lantbruksuniversitet,Skogens biomaterial och teknologi,Department of Forest Biomaterials and Technology
Franco-Cereceda, Anders (author)
Karolinska Institutet
Kroon, Jeffrey (author)
Univ Amsterdam, Dept Expt Vasc Med, Amsterdam Cardiovasc Sci, Amsterdam Univ Med Ctr, Amsterdam, Netherlands.
Foiani, Marco (author)
Fdn Italiana Ric Sul Canc, IFOM FIRC, Inst Mol Oncol, Milan, Italy.;Univ Milan, Milan, Italy.
Petrova, Tatiana, V (author)
Univ Lausanne, Dept Oncol, Lausanne, Switzerland.;Ludwig Inst Canc Res Lausanne, Lausanne, Switzerland.
Kilimann, Manfred W. (author)
Uppsala universitet,Institutionen för neurovetenskap,Max Planck Inst Expt Med, Dept Mol Neurobiol, Gottingen, Germany.
Back, Magnus (author)
Karolinska Institutet
Claesson-Welsh, Lena (author)
Uppsala universitet,Science for Life Laboratory, SciLifeLab,Vaskulärbiologi
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 (creator_code:org_t)
 
Wolters Kluwer, 2021
2021
English.
In: Circulation. - : Wolters Kluwer. - 0009-7322 .- 1524-4539. ; 144:20, s. 1629-1645
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Background: PALMD (palmdelphin) belongs to the family of paralemmin proteins implicated in cytoskeletal regulation. Single nucleotide polymorphisms in the PALMD locus that result in reduced expression are strong risk factors for development of calcific aortic valve stenosis and predict severity of the disease.Methods: Immunodetection and public database screening showed dominant expression of PALMD in endothelial cells (ECs) in brain and cardiovascular tissues including aortic valves. Mass spectrometry, coimmunoprecipitation, and immunofluorescent staining allowed identification of PALMD partners. The consequence of loss of PALMD expression was assessed in small interferring RNA-treated EC cultures, knockout mice, and human valve samples. RNA sequencing of ECs and transcript arrays on valve samples from an aortic valve study cohort including patients with the single nucleotide polymorphism rs7543130 informed about gene regulatory changes.Results: ECs express the cytosolic PALMD-KKVI splice variant, which associated with RANGAP1 (RAN GTP hydrolyase activating protein 1). RANGAP1 regulates the activity of the GTPase RAN and thereby nucleocytoplasmic shuttling via XPO1 (Exportin1). Reduced PALMD expression resulted in subcellular relocalization of RANGAP1 and XPO1, and nuclear arrest of the XPO1 cargoes p53 and p21. This indicates an important role for PALMD in nucleocytoplasmic transport and consequently in gene regulation because of the effect on localization of transcriptional regulators. Changes in EC responsiveness on loss of PALMD expression included failure to form a perinuclear actin cap when exposed to flow, indicating lack of protection against mechanical stress. Loss of the actin cap correlated with misalignment of the nuclear long axis relative to the cell body, observed in PALMD-deficient ECs, Palmd(-/-) mouse aorta, and human aortic valve samples derived from patients with calcific aortic valve stenosis. In agreement with these changes in EC behavior, gene ontology analysis showed enrichment of nuclear- and cytoskeleton-related terms in PALMD-silenced ECs.Conclusions: We identify RANGAP1 as a PALMD partner in ECs. Disrupting the PALMD/RANGAP1 complex alters the subcellular localization of RANGAP1 and XPO1, and leads to nuclear arrest of the XPO1 cargoes p53 and p21, accompanied by gene regulatory changes and loss of actin-dependent nuclear resilience. Combined, these consequences of reduced PALMD expression provide a mechanistic underpinning for PALMD's contribution to calcific aortic valve stenosis pathology.

Subject headings

MEDICIN OCH HÄLSOVETENSKAP  -- Klinisk medicin -- Kardiologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Clinical Medicine -- Cardiac and Cardiovascular Systems (hsv//eng)
MEDICIN OCH HÄLSOVETENSKAP  -- Medicinska och farmaceutiska grundvetenskaper -- Immunologi inom det medicinska området (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Basic Medicine -- Immunology in the medical area (hsv//eng)

Keyword

aortic valve stenosis
endothelial cells
nucleocytoplasmic transport
palmdelphin

Publication and Content Type

ref (subject category)
art (subject category)

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