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"Ray, Rashmi"
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Receptor for advanced glycation end-products in neurodegenerative diseases
by
Rai, Vivek
,
Banach, Marta
,
Ray, Rashmi
in
Glycation End Products, Advanced - metabolism
,
Humans
,
neurodegeneration
2015
This review, for the first time, aims to summarize the current knowledge in the emerging field of RAGE (receptor for advanced glycation end-products) studies in neurodegeneration and neurodegenerative diseases. RAGE, a member of the multiligand cell surface immunoglobulin family, has been implicated in numerous pathological conditions – from diabetes and cardiovascular diseases to tumors and neurodegenerative disorders, such as Alzheimer’s disease, familial amyloid polyneuropathy, diabetic neuropathy, Parkinson’s disease, and Huntington’s disease. Until now, the detailed mechanisms of the contribution of RAGE to neurodegeneration remain elusive; however, mounting evidence suggests that its detrimental actions are triggered by its ligand interactions and contribute to increased neuroinflammation, neuronal degeneration, and apoptosis. Deciphering the role of RAGE in neurodegenerative disorders will be a milestone in our basic understanding of the mechanisms involved in the pathogenesis of neurodegeneration, helping to delineate molecular links between complex RAGE signaling pathways and neuronal dysfunction and neurodegeneration.
Journal Article
p32 promotes melanoma progression and metastasis by targeting EMT markers, Akt/PKB pathway, and tumor microenvironment
2021
Melanoma originates from melanin-producing cells called melanocytes. Melanoma poses a great risk because of its rapid ability to spread and invade new organs. Cellular metastasis involves alteration in the gene expression profile and their transformation from epithelial to mesenchymal state. Despite of several advances, metastatic melanoma being a key cause of therapy failure and mortality remains poorly understood. p32 has been found to be involved in various physiological and pathophysiological conditions. However, the role of p32 in melanoma progression and metastasis remains underexplored. Here, we identify the role of p32 in the malignancy of both murine and human melanoma. p32 knockdown leads to reduced cell proliferation, migration, and invasion in murine and human melanoma cells. Furthermore, p32 promotes in vitro tumorigenesis, inducing oncogenes and EMT markers. Mechanistically, we show p32 regulates tumorigenic and metastatic properties through the Akt/PKB signaling pathway in both murine and human melanoma. Furthermore, p32 silencing attenuates melanoma tumor progression and lung metastasis in vivo, modulating the tumor microenvironment by inhibiting the angiogenesis, infiltration of macrophages, and leukocytes in mice. Taken together, our findings identify that p32 drives melanoma progression, metastasis, and regulates the tumor microenvironment. p32 can be a target of a novel therapeutic approach in the regulation of melanoma progression and metastasis.
Journal Article
Lysophosphatidic acid-RAGE axis promotes lung and mammary oncogenesis via protein kinase B and regulating tumor microenvironment
by
Singh, Satyendra Kumar
,
Rai, Vivek
,
Ray, Rashmi
in
Advanced glycosylation end products
,
AKT protein
,
Angiogenesis
2020
Background
Receptor for advanced glycation end products (RAGE) is a multi-ligand transmembrane receptor of the immunoglobulin superfamily. Lysophosphatidic acid (LPA) is a ligand for RAGE and is involved in physiological and pathophysiological conditions including cancer. However, RAGE-LPA axis is unexplored in lung and mammary cancer.
Methods
RAGE was silenced in A549, MDA MB-231 and MCF7 using RAGE shRNA. For in vitro tumorigenesis, we performed wound healing, colony formation, cell proliferation and invasion assays. Evaluation of expression of oncogenes, EMT markers and downstream signaling molecules was done by using western blot and immunohistochemistry. For subcellular expression of RAGE, immunofluorescence was done. In vivo tumorigenesis was assessed by intraperitoneal injection of cancer cells in nude mice.
Results
Here we show RAGE mediated profound increase in proliferation, migration and invasion of lung and mammary cancer cells via LPA in Protein kinase B (PKB) dependent manner. LPA mediated EMT transition is regulated by RAGE. In vivo xenograft results show significance of RAGE in LPA mediated lung and mammary tumor progression, angiogenesis and immune cell infiltration to tumor microenvironment.
Conclusion
Our results establish the significance and involvement of RAGE in LPA mediated lung and mammary tumor progression and EMT transition via RAGE. RAGE-LPA axis may be a therapeutic target in lung and mammary cancer treatment strategies.
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Video Abstract
Journal Article
Vaccination induces broadly neutralizing antibody precursors to HIV gp41
by
Toy, Laura
,
Crispin, Max
,
Lee, Chang-Chun D.
in
631/250/590
,
631/45/535/1266
,
692/699/255/1901
2024
A key barrier to the development of vaccines that induce broadly neutralizing antibodies (bnAbs) against human immunodeficiency virus (HIV) and other viruses of high antigenic diversity is the design of priming immunogens that induce rare bnAb-precursor B cells. The high neutralization breadth of the HIV bnAb 10E8 makes elicitation of 10E8-class bnAbs desirable; however, the recessed epitope within gp41 makes envelope trimers poor priming immunogens and requires that 10E8-class bnAbs possess a long heavy chain complementarity determining region 3 (HCDR3) with a specific binding motif. We developed germline-targeting epitope scaffolds with affinity for 10E8-class precursors and engineered nanoparticles for multivalent display. Scaffolds exhibited epitope structural mimicry and bound bnAb-precursor human naive B cells in ex vivo screens, protein nanoparticles induced bnAb-precursor responses in stringent mouse models and rhesus macaques, and mRNA-encoded nanoparticles triggered similar responses in mice. Thus, germline-targeting epitope scaffold nanoparticles can elicit rare bnAb-precursor B cells with predefined binding specificities and HCDR3 features.
Schief and colleagues show that germline-targeting epitope scaffolds can elicit responses from rare broadly neutralizing antibody precursor B cells with predefined binding specificities and genetic features.
Journal Article
Affinity gaps among B cells in germinal centers drive the selection of MPER precursors
2024
Current prophylactic human immunodeficiency virus 1 (HIV-1) vaccine research aims to elicit broadly neutralizing antibodies (bnAbs). Membrane-proximal external region (MPER)-targeting bnAbs, such as 10E8, provide exceptionally broad neutralization, but some are autoreactive. Here, we generated humanized B cell antigen receptor knock-in mouse models to test whether a series of germline-targeting immunogens could drive MPER-specific precursors toward bnAbs. We found that recruitment of 10E8 precursors to germinal centers (GCs) required a minimum affinity for germline-targeting immunogens, but the GC residency of MPER precursors was brief due to displacement by higher-affinity endogenous B cell competitors. Higher-affinity germline-targeting immunogens extended the GC residency of MPER precursors, but robust long-term GC residency and maturation were only observed for MPER-HuGL18, an MPER precursor clonotype able to close the affinity gap with endogenous B cell competitors in the GC. Thus, germline-targeting immunogens could induce MPER-targeting antibodies, and B cell residency in the GC may be regulated by a precursor–competitor affinity gap.
Batista, Schief and colleagues use a series of germline-targeting immunogens in knock-in mice expressing heavy chain sequences derived from the HIV broadly neutralizing antibody 10E8 to characterize the requirements of 10E8 B cell precursors for entry and maturation in the germinal center.
Journal Article
MYH9 suppresses melanoma tumorigenesis, metastasis and regulates tumor microenvironment
by
Singh, Satyendra Kumar
,
Sinha Sunita
,
Rai, Vivek
in
Cell adhesion & migration
,
Melanoma
,
Metastasis
2020
Non-muscle myosin IIA heavy chain (MYH9) has been implicated in many physiological and pathological functions including cell adhesion, polarity, motility to cancer. However, its role in melanoma remains unexplored. The aim of our study was to evaluate the role of MYH9 in melanoma tumor development and metastasis and further to find out the potential underlying mechanisms. In this study, we evaluated the in vitro migratory and invasive properties and in vivo tumor development and metastasis in C57BL/6 mice by silencing MYH9 in B16F10 melanoma cells. Knocking down MYH9 enhanced migration and invasiveness of B16F10 cells in vitro. Furthermore, MYH9 silencing accelerated tumor growth and metastasis in melanoma subcutaneous and intravenous mouse models. Next, oncogenes analysis revealed epithelial–mesenchymal transition and Erk signaling pathway are being regulated with MYH9 expression. Finally, MYH9 silencing in B16F10 cells modulates the tumor microenvironment by manipulating the leukocytes and macrophages infiltration in tumors. These findings established the opposing role of MYH9 as a tumor suppressor in melanoma suggesting specific MYH9 based approaches in therapeutics.
Journal Article
Treatment effect with anti-RAGE F(ab′)2 antibody improves hind limb angiogenesis and blood flow in Type 1 diabetic mice with left femoral artery ligation
by
Rai, Vivek
,
Zhang, Geping
,
Schmidt, Ann Marie
in
Animals
,
Antibodies - therapeutic use
,
Diabetes Mellitus, Experimental
2015
We investigated treatment with a receptor for advanced glycation endproduct (RAGE) blocking antibody on angiogenic response to hind limb ischemia in diabetic mice. Streptozotocin treated C57BL/6 mice received either murine monoclonal anti-RAGE F(ab′)2 intraperitoneally (n=10) or saline (n=9) for 9 weeks. Diabetic plus 10 non-diabetic C57BL/6 mice underwent left femoral artery ligation and 5 days later angiogenesis imaging with 99mTc-Arg–Gly–Asp (RGD) nanoSPECT/CT. Twenty-four days later, hind limb blood flow was measured with ultrasound, the mice were euthanized, and tissue was taken for immunohistochemistry. The angiogenic imaging signal in ischemic limbs was higher in RAGE-ab treated versus saline treated mice at day 5 (3.1±1.4 vs 1.68±0.35, p=0.02) and blood flow was higher at day 24 (1.49±0.5 vs 0.61±0.39, p=0.04). Immunohistochemistry of ischemic muscles showed greater capillary density in the RAGE-ab treated group versus the vehicle-treated group (p<0.001) (NS from non-diabetic mice). In conclusion, treatment with anti-RAGE F(ab′)2 in diabetic mice improves neovascularization in the ischemic leg.
Journal Article
Fluids, Anomalies and the Chiral Magnetic Effect: A Group-theoretic Formulation
2012
It is possible to formulate fluid dynamics in terms of group-valued variables. This is particularly suited to the cases where the fluid has nonabelian charges and is coupled to nonabelian gauge fields. We explore this formulation further in this paper. An action for a fluid of relativistic particles (with and without spin) is given in terms of the Lorentz and Poincare (or de Sitter) groups. Considering the case of particles with flavor symmetries, a general fluid action which also incorporates all flavor anomalies is given. The chiral magnetic and chiral vorticity effects as well as the consequences of the mixed gauge-gravity anomaly are discussed.
Novel features of planar fermions: Anyon superconductivity and the quantum Hall effect
1994
In this work we have discussed some remarkable features associated with systems where the particles are permitted to move only along a plane, the third degree of freedom having been effectively frozen out. From a theoretical point of view, the restriction of the dimensionality of space to two is interesting in the sense that anyons, particles with any spin and any statistics may exist in planar systems. Anyons, as may be expected, have some rather novel features which are absent in higher dimensions. In this work, we have dwelt on one such feature: the superfluidity of a gas of anyonic particles. We have further demonstrated that if the anyons are coupled minimally to electromagnetism, the magnetic field is expelled from within the system, resulting in superconductivity. This is the so-called anyon superconductivity, which is one of the candidates for explaining the properties of planar superconductors. Further, planar fermionic systems subjected to strong magnetic fields normal to the plane support the various quantum Hall effects. The single-particle spectrum for such a system consists of the equi-spaced Landau levels, the gap between two successive levels being the cyclotron frequency. If the applied magnetic field is strong enough, the system is projected to the lowest Landau level and hence the development of a field theory of fermions in the lowest Landau levels becomes of more than cursory interest. In this work, we have developed the field theory of such fermions, coupled to external perturbative electromagnetic fields, when the system is projected onto the lowest Landau level. If we further confine the fermions to a finite portion of the plane through some suitably chosen confining potential, the field theory that we develop enables us to discuss the excitations associated with the boundary of the system. These excitations, dubbed as the edge-excitations in the literature, are shown to be important in the maintenance of the original electromagnetic gauge invariance of the system. In summary, the main thrust of this work is in the discussion of anyon superconductivity and the development of a field theory for fermions in the lowest Landau level, the unifying theme being the physics of planar fermions.
Dissertation