Venkateswaran Ramamoorthi Elangovan
University of Arizona
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Cellular Signalling | 2011
Djanybek Adyshev; Nurgul Moldobaeva; Venkateswaran Ramamoorthi Elangovan; Joe G. N. Garcia; Steven M. Dudek
Endothelial cell (EC) barrier dysfunction induced by inflammatory agonists is a frequent pathophysiologic event in multiple diseases. The platelet-derived phospholipid sphingosine-1 phosphate (S1P) reverses this dysfunction by potently enhancing the EC barrier through a process involving Rac GTPase-dependent cortical actin rearrangement as an integral step. In this study we explored the role of the ezrin, radixin, and moesin (ERM) family of actin-binding linker protein in modulating S1P-induced human pulmonary EC barrier enhancement. S1P induces ERM translocation to the EC periphery and promotes ERM phosphorylation on a critical threonine residue (Ezrin-567, Radixin-564, Moesin-558). This phosphorylation is dependent on activation of PKC isoforms and Rac1. The majority of ERM phosphorylation on these critical threonine residues after S1P occurs in moesin and ezrin. Baseline radixin phosphorylation is higher than in the other two ERM proteins but does not increase after S1P. S1P-induced moesin and ezrin threonine phosphorylation is not mediated by the barrier enhancing receptor S1PR1 because siRNA downregulation of S1PR1 fails to inhibit these phosphorylation events, while stimulation of EC with the S1PR1-specific agonist SEW2871 fails to induce these phosphorylation events. Silencing of either all ERM proteins or radixin alone (but not moesin alone) reduced S1P-induced Rac1 activation and phosphorylation of the downstream Rac1 effector PAK1. Radixin siRNA alone, or combined siRNA for all three ERM proteins, dramatically attenuates S1P-induced EC barrier enhancement (measured by transendothelial electrical resistance (TER), peripheral accumulation of di-phospho-MLC, and cortical cytoskeletal rearrangement. In contrast, moesin depletion has the opposite effects on these parameters. Ezrin silencing partially attenuates S1P-induced EC barrier enhancement and cytoskeletal changes. Thus, despite structural similarities and reported functional redundancy, the ERM proteins differentially modulate S1P-induced alterations in lung EC cytoskeleton and permeability. These results suggest that ERM activation is an important regulatory event in EC barrier responses to S1P.
American Journal of Respiratory Cell and Molecular Biology | 2014
Xiaoguang Sun; Venkateswaran Ramamoorthi Elangovan; Brandon Mapes; Sara M. Camp; Saad Sammani; Laleh Saadat; Ermelinda Ceco; Shwu Fan Ma; Carlos Flores; Matthew S. MacDougall; Hector Quijada; Bin Liu; Carrie L. Kempf; Ting Wang; Eddie T. Chiang; Joe G. N. Garcia
Increased nicotinamide phosphoribosyltransferase (NAMPT) transcription is mechanistically linked to ventilator-induced inflammatory lung injury (VILI), with VILI severity attenuated by reduced NAMPT bioavailability. The molecular mechanisms of NAMPT promoter regulation in response to excessive mechanical stress remain poorly understood. The objective of this study was to define the contribution of specific transcription factors, acute respiratory distress syndrome (ARDS)-associated single nucleotide polymorphisms (SNPs), and promoter demethylation to NAMPT transcriptional regulation in response to mechanical stress. In vivo NAMPT protein expression levels were examined in mice exposed to high tidal volume mechanical ventilation. In vitro NAMPT expression levels were examined in human pulmonary artery endothelial cells exposed to 5 or 18% cyclic stretch (CS), with NAMPT promoter activity assessed using NAMPT promoter luciferase reporter constructs with a series of nested deletions. In vitro NAMPT transcriptional regulation was further characterized by measuring luciferase activity, DNA demethylation, and chromatin immunoprecipitation. VILI-challenged mice exhibited significantly increased NAMPT expression in bronchoalveolar lavage leukocytes and in lung endothelium. A mechanical stress-inducible region (MSIR) was identified in the NAMPT promoter from -2,428 to -2,128 bp. This MSIR regulates NAMPT promoter activity, mRNA expression, and signal transducer and activator of transcription 5 (STAT5) binding, which is significantly increased by 18% CS. In addition, NAMPT promoter activity was increased by pharmacologic promoter demethylation and inhibited by STAT5 silencing. ARDS-associated NAMPT promoter SNPs rs59744560 (-948G/T) and rs7789066 (-2,422A/G) each significantly elevated NAMPT promoter activity in response to 18% CS in a STAT5-dependent manner. Our results show that NAMPT is a key novel ARDS therapeutic target and candidate gene with genetic/epigenetic transcriptional regulation in response to excessive mechanical stress.
Pulmonary circulation | 2016
Venkateswaran Ramamoorthi Elangovan; Sara M. Camp; Gabriel T. Kelly; Ankit A. Desai; Djanybek Adyshev; Xiaoguang Sun; Stephen M. Black; Ting Wang; Joe G. N. Garcia
Mechanical ventilation, a lifesaving intervention for patients with acute respiratory distress syndrome (ARDS), also unfortunately contributes to excessive mechanical stress and impaired lung physiological and structural integrity. We have elsewhere established the pivotal role of increased nicotinamide phosphoribosyltransferase (NAMPT) transcription and secretion as well as its direct binding to the toll-like receptor 4 (TLR4) in the progression of this devastating syndrome; however, regulation of this critical gene in ventilator-induced lung injury (VILI) is not well characterized. On the basis of an emerging role for epigenetics in enrichment of VILI and CpG sites within the NAMPT promoter and 5′UTR, we hypothesized that NAMPT expression and downstream transcriptional events are influenced by epigenetic mechanisms. Concomitantly, excessive mechanical stress of human pulmonary artery endothelial cells or lipopolysaccharide (LPS) treatment led to both reduced DNA methylation levels in the NAMPT promoter and increased gene transcription. Histone deacetylase inhibition by trichostatin A or Sirt-1–silencing RNA attenuates LPS-induced NAMPT expression. Furthermore, recombinant NAMPT administration induced TLR4-dependent global H3K9 hypoacetylation. These studies suggest a complex epigenetic regulatory network of NAMPT in VILI and ARDS and open novel strategies for combating VILI and ARDS.
American Journal of Respiratory Cell and Molecular Biology | 2013
Djanybek Adyshev; Venkateswaran Ramamoorthi Elangovan; Nurgul Moldobaeva; Brandon Mapes; Xiaoguang Sun; Joe G. N. Garcia
american thoracic society international conference | 2011
Venkateswaran Ramamoorthi Elangovan; Djanybek Adyshev; Shahid Siddiqui; Nurgul Moldobaeva; Steven M. Dudek; Joe G. N. Garcia
Circulation | 2014
Ting Wang; Tao Jiang; Hector Quijada; Joseph B Mascarenhas; Venkateswaran Ramamoorthi Elangovan; Louise Hecker; Yves A. Lussier; Jason X.-J. Yuan; Donna D. Zhang; Joe G. N. Garcia
Circulation | 2014
Tao Jiang; Joseph B Mascarenhas; Venkateswaran Ramamoorthi Elangovan; Ting Wang; Donna D. Zhang; Joe G. N. Garcia
american thoracic society international conference | 2012
Djanybek Adyshev; Nurgul Moldobaeva; Venkateswaran Ramamoorthi Elangovan; Steven M. Dudek; Joe G. N. Garcia
american thoracic society international conference | 2011
Djanybek Adyshev; Nurgul Moldobaeva; Venkateswaran Ramamoorthi Elangovan; Joe G. N. Garcia; Steven M. Dudek
american thoracic society international conference | 2010
Shahid S. Siddiqui; Mary E. Brown; Patrick A. Singleton; Venkateswaran Ramamoorthi Elangovan; Jaideep Moitra; Saad Sammani; Liliana Moreno-Vinasco; Joe G. N. Garcia