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Full-Text Articles in Life Sciences

Splenic Stromal Niches Support Hematopoiesis Of Dendritic-Like Cells From Precursors In Bone Marrow And Spleen., Pravin Periasamy, Jonathan Tan, Kristin Griffiths, Helen O'Neill Sep 2015

Splenic Stromal Niches Support Hematopoiesis Of Dendritic-Like Cells From Precursors In Bone Marrow And Spleen., Pravin Periasamy, Jonathan Tan, Kristin Griffiths, Helen O'Neill

Jonathan Tan

Objective The aims of this study are to test the ability of stromal cells from murine spleen to support hematopoiesis, to define the tissue source of precursors that seed these hematopoietic niches, and to determine the type of cells produced. Materials and Methods Cloned isolates of murine spleen stroma have been developed that support hematopoiesis. Analysis has been investigated in terms of tissue source of progenitors. Type and number of cells produced were analyzed by flow cytometry. Results Hematopoietic precursors that seed cocultures exist in spleen and bone marrow (BM), but not thymus. Cell production is highest if overlay cells …


Nf-Kappab Signaling Pathways In Mammalian And Insect Innate Immunity, Neal S. Silverman, Tom Maniatis Dec 2009

Nf-Kappab Signaling Pathways In Mammalian And Insect Innate Immunity, Neal S. Silverman, Tom Maniatis

Neal Silverman

In this review, we discuss recent advances in understanding the signaling pathways in mammalian and Drosophila innate immunity, with emphasis on the mechanisms by which NF-kappaB/Rel family proteins are activated.


The Generation Of Influenza-Specific Humoral Responses Is Impaired In St6gal I-Deficient Mice., Thandi M. Onami, J Zeng, H. M. Joo, B. Rajini, J. P. Wrammert, M. Y. Sangster Apr 2009

The Generation Of Influenza-Specific Humoral Responses Is Impaired In St6gal I-Deficient Mice., Thandi M. Onami, J Zeng, H. M. Joo, B. Rajini, J. P. Wrammert, M. Y. Sangster

Thandi M. Onami

Posttranslational modification of proteins, such as glycosylation, can impact cell signaling and function. ST6Gal I, a glycosyltransferase expressed by B cells, catalyzes the addition of alpha-2,6 sialic acid to galactose, a modification found on N-linked glycoproteins such as CD22, a negative regulator of B cell activation. We show that SNA lectin, which binds alpha-2,6 sialic acid linked to galactose, shows high binding on plasma blasts and germinal center B cells following viral infection, suggesting ST6Gal I expression remains high on activated B cells in vivo. To understand the relevance of this modification on the antiviral B cell immune response, we …


Role Of Chromodomain Helicase Dna-Binding Protein 2 In Dna Damage Response Signaling And Tumorigenesis., Thandi M. Onami, P. Nagarajan, S. Rajagopalan, S. Kania, R. Donnell, S. Venkatachalam Jan 2009

Role Of Chromodomain Helicase Dna-Binding Protein 2 In Dna Damage Response Signaling And Tumorigenesis., Thandi M. Onami, P. Nagarajan, S. Rajagopalan, S. Kania, R. Donnell, S. Venkatachalam

Thandi M. Onami

The chromodomain helicase DNA-binding proteins (CHDs) are known to affect transcription through their ability to remodel chromatin and modulate histone deacetylation. In an effort to understand the functional role of the CHD2 in mammals, we have generated a Chd2 mutant mouse model. Remarkably, the Chd2 protein appears to play a critical role in the development, hematopoiesis and tumor suppression. The Chd2 heterozygous mutant mice exhibit increased extramedullary hematopoiesis and susceptibility to lymphomas. At the cellular level, Chd2 mutants are defective in hematopoietic stem cell differentiation, accumulate higher levels of the chromatin-associated DNA damage response mediator, cH2AX, and exhibit an aberrant …


Splenic Stromal Niches Support Hematopoiesis Of Dendritic-Like Cells From Precursors In Bone Marrow And Spleen., Pravin Periasamy, Jonathan Tan, Kristin Griffiths, Helen O'Neill Dec 2008

Splenic Stromal Niches Support Hematopoiesis Of Dendritic-Like Cells From Precursors In Bone Marrow And Spleen., Pravin Periasamy, Jonathan Tan, Kristin Griffiths, Helen O'Neill

Helen O'Neill

Objective The aims of this study are to test the ability of stromal cells from murine spleen to support hematopoiesis, to define the tissue source of precursors that seed these hematopoietic niches, and to determine the type of cells produced. Materials and Methods Cloned isolates of murine spleen stroma have been developed that support hematopoiesis. Analysis has been investigated in terms of tissue source of progenitors. Type and number of cells produced were analyzed by flow cytometry. Results Hematopoietic precursors that seed cocultures exist in spleen and bone marrow (BM), but not thymus. Cell production is highest if overlay cells …