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Dive into the research topics where Narayanaswamy Ramesh is active.

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Featured researches published by Narayanaswamy Ramesh.


Nature Cell Biology | 2001

WIP regulates N-WASP-mediated actin polymerization and filopodium formation.

Narcisa Martinez-Quiles; Rajat Rohatgi; Inés M. Antón; Miguel Medina; Stephen P. Saville; Hiroaki Miki; Hideki Yamaguchi; Tadaomi Takenawa; John H. Hartwig; Raif S. Geha; Narayanaswamy Ramesh

Induction of filopodia is dependent on activation of the small GTPase Cdc42 and on neural Wiskott–Aldrich-syndrome protein (N-WASP). Here we show that WASP-interacting protein (WIP) interacts directly with N-WASP and actin. WIP retards N-WASP/Cdc42-activated actin polymerization mediated by the Arp2/3 complex, and stabilizes actin filaments. Microinjection of WIP into NIH 3T3 fibroblasts induces filopodia; this is inhibited by microinjection of anti-N-WASP antibody. Microinjection of anti-WIP antibody inhibits induction of filopodia by bradykinin, by an active Cdc42 mutant (Cdc42(V12)) and by N-WASP. Our results indicate that WIP and N-WASP may act as a functional unit in filopodium formation, which is consistent with their role in actin-tail formation in cells infected with vaccinia virus or Shigella.


Molecular and Cellular Biology | 2004

Erk/Src Phosphorylation of Cortactin Acts as a Switch On-Switch Off Mechanism That Controls Its Ability To Activate N-WASP

Narcisa Martinez-Quiles; Hsin Yi Henry Ho; Marc W. Kirschner; Narayanaswamy Ramesh; Raif S. Geha

ABSTRACT The Arp2/3 complex can be independently activated to initiate actin polymerization by the VCA domain of WASP family members and by the acidic N-terminal and F-actin-binding repeat region of cortactin, which possesses a C-terminal SH3 domain. Cortactin is a target for phosphorylation by Src tyrosine kinases and by serine/threonine kinases that include Erk. Here we demonstrate that cortactin binds N-WASP and WASP via its SH3 domain, induces in vitro N-WASP-mediated actin polymerization, and colocalizes with N-WASP and WASP at sites of active actin polymerization. Erk phosphorylation and a mimicking S405,418D double mutation enhanced cortactin binding and activation of N-WASP. In contrast, Src phosphorylation inhibited the ability of cortactin previously phosphorylated by Erk, and that of S405,418D double mutant cortactin, to bind and activate N-WASP. Furthermore, Y→D mutation of three tyrosine residues targeted by Src (Y421, Y466, and Y482) inhibited the ability of S405,418D cortactin to activate N-WASP. We propose that Erk phosphorylation liberates the SH3 domain of cortactin from intramolecular interactions with proline-rich regions, causing it to synergize with WASP and N-WASP in activating the Arp2/3 complex, and that Src phosphorylation terminates cortactin activation of N-WASP and WASP.


Molecular Cell | 2002

Mechanism of recruitment of WASP to the immunological synapse and of its activation following TCR ligation

Yoji Sasahara; Rima Rachid; Michael Byrne; Miguel Angel de la Fuente; Robert T. Abraham; Narayanaswamy Ramesh; Raif S. Geha

F-actin polymerization following engagement of the T cell receptor (TCR) is dependent on WASP and is critical for T cell activation. The link between TCR and WASP is not fully understood. In resting cells, WASP exists in a complex with WIP, which inhibits its activation by Cdc42. We show that the adaptor protein CrkL binds directly to WIP. Further, TCR ligation results in the formation of a ZAP-70-CrkL-WIP-WASP complex, which is recruited to lipid rafts and the immunological synapse. TCR engagement also causes PKCtheta-dependent phosphorylation of WIP, causing the disengagement of WASP from the WIP-WASP complex, thereby releasing it from WIP inhibition. These results suggest that the ZAP-70-CrkL-WIP pathway and PKCtheta link TCR to WASP activation.


Proceedings of the National Academy of Sciences of the United States of America | 2002

Wiskott-Aldrich syndrome protein is required for NK cell cytotoxicity and colocalizes with actin to NK cell-activating immunologic synapses.

Jordan S. Orange; Narayanaswamy Ramesh; Eileen Remold-O'Donnell; Yoji Sasahara; Louise A. Koopman; Michael Byrne; Francisco A. Bonilla; Fred S. Rosen; Raif S. Geha; Jack L. Strominger

The Wiskott–Aldrich syndrome (WAS) is a primary immunodeficiency disorder caused by a mutation in WAS protein (WASp) that results in defective actin polymerization. Although the function of many hematopoietic cells requires WASp, the specific expression and function of this molecule in natural killer (NK) cells is unknown. Here, we report that WAS patients have increased percentages of peripheral blood NK cells and that fresh enriched NK cells from two patients with a WASp mutation have defective cytolytic function. In normal NK cells, WASp was expressed and localized to the activating immunologic synapse (IS) with filamentous actin (F-actin). Perforin also localized to the NK cell-activating IS but at a lesser frequency than F-actin and WASp. The accumulation of F-actin and WASp at the activating IS was decreased significantly in NK cells that had been treated with the inhibitor of actin polymerization, cytochalasin D. NK cells from WAS patients lacked expression of WASp and accumulated F-actin at the activating IS infrequently. Thus, WASp has an important function in NK cells. In patients with WASp mutations, the resulting NK cell defects are likely to contribute to their disease.


Journal of Clinical Investigation | 2002

Deficient natural killer cell cytotoxicity in patients with IKK-γ/NEMO mutations

Jordan S. Orange; Scott R. Brodeur; Ashish Jain; Francisco A. Bonilla; Lynda C. Schneider; Roberto Kretschmer; Samuel Nurko; Wendy Rasmussen; Julia R. Köhler; Stephen E. Gellis; Betsy Ferguson; Jack L. Strominger; Jonathan Zonana; Narayanaswamy Ramesh; Zuhair K. Ballas; Raif S. Geha

NF-κB essential modifier (NEMO), also known as IKK-γ, is a member of the I-κB kinase complex responsible for phosphorylating I-κB, allowing the release and activation of NF-κB. Boys with an expressed NEMO mutation have an X-linked syndrome characterized by hypohidrotic ectodermal dysplasia with immune deficiency (HED-ID). The immunophenotype resulting from NEMO mutation is highly variable, with deficits in both T and B cell responses. We evaluated three patients with NEMO mutations (L153R, Q403X, and C417R) and HED-ID who had evidence of defective CD40 signaling. All three patients had normal percentages of peripheral blood NK cells, but impaired NK cell cytotoxic activity. This was not due to a generalized defect in cytotoxicity because antibody-dependent cellular cytotoxicity was intact. This abnormality was partially reversed by in vitro addition of IL-2, which was also able to induce NF-κB activation. In one patient with recurrent cytomegalovirus infections, administration of IL-2 partially corrected the NK cell killing deficit. These data suggest that NEMO participates in signaling pathways leading to NK cell cytotoxicity and that IL-2 can activate NF-κB and partially overcome the NK cell defect in patients with NEMO mutations.


Immunity | 2002

WIP Deficiency Reveals a Differential Role for WIP and the Actin Cytoskeleton in T and B Cell Activation

Inés M. Antón; Miguel Angel de la Fuente; Tasha N. Sims; Sheryl Freeman; Narayanaswamy Ramesh; John H. Hartwig; Michael L. Dustin; Raif S. Geha

WIP stabilizes actin filaments and is important for filopodium formation. To define the role of WIP in immunity, we generated WIP-deficient mice. WIP(minus sign/minus sign) mice have normal lymphocyte development, but their T cells fail to proliferate, secrete IL-2, increase their F-actin content, polarize and extend protrusions following T cell receptor ligation, and are deficient in conjugate formation with superantigen-presenting B cells and anti-CD3 bilayers. In contrast, WIP-deficient B lymphocytes have enhanced proliferation and CD69 expression following B cell receptor ligation and mount normal antibody responses to T-independent antigens. Both WIP-deficient T and B cells show a profound defect in their subcortical actin filament networks. These results suggest that WIP is important for immunologic synapse formation and T cell activation.


Journal of Clinical Investigation | 1994

Cyclosporin A inhibits CD40 ligand expression in T lymphocytes.

Ramsay Fuleihan; Narayanaswamy Ramesh; Anthony Horner; Deborah Ahern; Peter J. Belshaw; David G. Alberg; Ivan Stamenkovic; William E. Harmon; Raif S. Geha

The ligand for CD40 is expressed on activated T lymphocytes and delivers contact-dependent activation signals to B lymphocytes. The mechanisms regulating CD40 ligand gene expression are largely unknown. Optimal expression of CD40 ligand required activation of protein kinase C and a rise in intracellular calcium concentration. CD40 ligand expression was inhibited by pretreatment of T cells with cyclosporin A. Cyclosporin A analogues inhibited CD40 ligand expression with a potency mirroring the ability of each compound to inhibit calcineurin activity, indicating that calcineurin plays a key role in CD40 ligand gene expression. Cyclosporin A inhibited IL-4-driven CD40 ligand-dependent IgE isotype switching in PBMC but did not inhibit IgE synthesis induced by CD40 mAb plus IL-4. PBMC derived from transplant patients receiving cyclosporin A failed to express CD40 ligand upon stimulation. These results suggest that patients receiving cyclosporin A may be deficient in CD40 ligand-dependent T cell help.


Nature Immunology | 2012

DOCK8 functions as an adaptor that links TLR-MyD88 signaling to B cell activation

Haifa H. Jabara; Douglas R. McDonald; Erin Janssen; Michel J. Massaad; Narayanaswamy Ramesh; Arturo Borzutzky; Ingrid Rauter; Halli Benson; Lynda C. Schneider; Sachin N. Baxi; Mike Recher; Luigi D. Notarangelo; Rima Wakim; Ghassan Dbaibo; Majed Dasouki; Waleed Al-Herz; Isil B. Barlan; Safa Barış; Necil Kutukculer; Hans D. Ochs; Alessandro Plebani; Maria Kanariou; Gérard Lefranc; Ismail Reisli; Katherine A. Fitzgerald; Douglas T. Golenbock; John P. Manis; Sevgi Keles; Reuben Ceja; Talal A. Chatila

The adaptors DOCK8 and MyD88 have been linked to serological memory. Here we report that DOCK8-deficient patients had impaired antibody responses and considerably fewer CD27+ memory B cells. B cell proliferation and immunoglobulin production driven by Toll-like receptor 9 (TLR9) were considerably lower in DOCK8-deficient B cells, but those driven by the costimulatory molecule CD40 were not. In contrast, TLR9-driven expression of AICDA (which encodes the cytidine deaminase AID), the immunoglobulin receptor CD23 and the costimulatory molecule CD86 and activation of the transcription factor NF-κB, the kinase p38 and the GTPase Rac1 were intact. DOCK8 associated constitutively with MyD88 and the tyrosine kinase Pyk2 in normal B cells. After ligation of TLR9, DOCK8 became tyrosine-phosphorylated by Pyk2, bound the Src-family kinase Lyn and linked TLR9 to a Src–kinase Syk–transcription factor STAT3 cascade essential for TLR9-driven B cell proliferation and differentiation. Thus, DOCK8 functions as an adaptor in a TLR9-MyD88 signaling pathway in B cells.


Journal of Biological Chemistry | 1998

The Wiskott-Aldrich Syndrome Protein-interacting Protein (WIP) Binds to the Adaptor Protein Nck

Inés M. Antón; Wange Lu; Bruce J. Mayer; Narayanaswamy Ramesh; Raif S. Geha

Nck is a ubiquitous adaptor molecule composed of three Src homology 3 (SH3) domains followed by a single SH2 domain. Nck links, via its SH2 domain, tyrosine-phosphorylated receptors to effector proteins that contain SH3-binding proline-rich sequences. In this report, we demonstrate that recombinant Nck precipitates endogenous WIP, a novel proline-rich protein that interacts with the Wiskott-Aldrich syndrome protein (WASP), from BJAB cell lysates. Nck binds through its second SH3 domain to WIP, and Nck binds to WIP at a site (amino acids 321–415) that differs from the WASP-binding site (amino acids 416–488). WIP has been shown to associate with the actin polymerization regulatory protein profilin and to induce actin polymerization and cytoskeletal reorganization in lymphoid cells. We demonstrate the presence of profilin in Nck precipitates suggesting that Nck may couple extracellular signals to the cytoskeleton via its interaction with WIP and profilin.


Proceedings of the National Academy of Sciences of the United States of America | 2007

WIP is a chaperone for Wiskott–Aldrich syndrome protein (WASP)

Miguel Angel de la Fuente; Yoji Sasahara; Marco Calamito; Inés M. Antón; Abdallah Elkhal; Maria D. Gallego; Koduru Suresh; Katherine A. Siminovitch; Hans D. Ochs; Kenneth C. Anderson; Fred S. Rosen; Raif S. Geha; Narayanaswamy Ramesh

Wiskott–Aldrich syndrome protein (WASP) is in a complex with WASP-interacting protein (WIP). WASP levels, but not mRNA levels, were severely diminished in T cells from WIP−/− mice and were increased by introduction of WIP in these cells. The WASP binding domain of WIP was shown to protect WASP from degradation by calpain in vitro. Treatment with the proteasome inhibitors MG132 and bortezomib increased WASP levels in T cells from WIP−/− mice and in T and B lymphocytes from two WAS patients with missense mutations (R86H and T45M) that disrupt WIP binding. The calpain inhibitor calpeptin increased WASP levels in activated T and B cells from the WASP patients, but not in primary T cells from the patients or from WIP−/− mice. Despite its ability to increase WASP levels proteasome inhibition did not correct the impaired IL-2 gene expression and low F-actin content in T cells from the R86H WAS patient. These results demonstrate that WIP stabilizes WASP and suggest that it may also be important for its function.

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Raif S. Geha

Boston Children's Hospital

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Inés M. Antón

Spanish National Research Council

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Haifa H. Jabara

Boston Children's Hospital

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John H. Hartwig

Brigham and Women's Hospital

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Talal A. Chatila

Boston Children's Hospital

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Miguel Angel de la Fuente

Spanish National Research Council

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