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One or more keywords matched the following properties of Clark, Marcus Ramsay
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keywords Lupus Nephritis
overview Our laboratory has a long-standing interest in B cell antigen receptor (BCR) signaling and how BCR dependent processes regulate specific cell fate decisions. In the bone marrow, we have been working to understand how signals initiated through the pre-BCR, in conjunction with those delivered through the IL-7 receptor, coordinate cell cycle progression with immunoglobulin light chain gene recombination. These studies resulted in discovery of the epigenetic reader BRWD1 as critical for both regulating Ig-kappa accessibility and in coordinating broad transcriptional programs in early and late B lymphopoiesis. Recently, we have demonstrated that the pre-BCR initiates an IRF4-CXCR4 feedforward loop and that it is CXCR4 that directly signals Ig-kappa recombination. These latter findings fundamentally rewrite the canonical model of B lymphopoiesis. Furthermore, they are the first demonstration of a direct and independent role for CXCR4 in driving an important biological process. In the periphery, we have focused on the molecular control of germinal centers (GCs). Recently, we have recently defined two novel B cell populations within the dark zone that both allow compartmentalization of fundamental GC functions and reveal the molecular programs of the GC cycle. This new three population model fundamentally rewrites the GC paradigm. In all these areas, we have derived novel in vivo models, and have performed directed in vitro studies, to obtain definitive insights into these processes. Our translational studies have focused on how in situ adaptive immune responses drive tubulointerstitial inflammation in human lupus nephritis. For these studies, we have used deep machine learning to develop novel image analysis tools to quantify and identify functional relationships between different T cell and antigen presenting cell populations in situ. Remarkably, this bioinformatics platform approaches the sensitivity and specificity of two-photon excitation microscopy (TPEM). However, unlike TPEM, it can be applied to the study of human disease. We have also used single cell technologies to understand B cell selection at sites of inflammation and determine the interrelationships between transcriptional state and antigenic specificity.
One or more keywords matched the following items that are connected to Clark, Marcus Ramsay
Item TypeName
Concept Nephritis, Interstitial
Academic Article In situ B cell-mediated immune responses and tubulointerstitial inflammation in human lupus nephritis.
Academic Article Predicting outcomes of lupus nephritis with tubulointerstitial inflammation and scarring.
Academic Article Cell distance mapping identifies functional T follicular helper cells in inflamed human renal tissue.
Academic Article Vimentin is a dominant target of in situ humoral immunity in human lupus tubulointerstitial nephritis.
Academic Article Self-reactive IgE exacerbates interferon responses associated with autoimmunity.
Academic Article Bcl-2 as a Therapeutic Target in Human Tubulointerstitial Inflammation.
Academic Article Quantifying in situ adaptive immune cell cognate interactions in humans.
Academic Article Kidney tissue hypoxia dictates T cell-mediated injury in murine lupus nephritis.
Academic Article Machine Learning to Quantify In Situ Humoral Selection in Human Lupus Tubulointerstitial Inflammation.
Academic Article Cellular aspects of the pathogenesis of lupus nephritis.
Academic Article Quantifying the effects of biopsy fixation and staining panel design on automatic instance segmentation of immune cells in human lupus nephritis.
Academic Article Specific in situ inflammatory states associate with progression to renal failure in lupus nephritis.
Academic Article The ion transporter Na+-K+-ATPase enables pathological B cell survival in the kidney microenvironment of lupus nephritis.
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  • Nephritis