Production of biologically active human lymphotactin (XCL1) by Lactococcus lactis
BIOTECHNOLOGY LETTERS
Authors: Zavala-Flores, Laura M.; Villatoro-Hernandez, Julio; Gamez-Escobedo, Anali; Franco-Molina, Moises; Rangel-Colmenero, Blanca R.; Villanueva-Olivo, Arnulfo; Gutierrez-Puente, Yolanda; Montes de Oca-Luna, Roberto; Valdes-Flores, Jesus; Saucedo-Cardenas, Odila
Abstract
Lymphotactin-XCL1 is a chemokine produced mainly by activated CD8+ T-cells and directs migration of CD4+ and CD8+ lymphocytes and natural killer (NK) cells. We expressed human lymphotactin (LTN) by the lactic-acid bacterium Lactococcus lactis. Biological activity of LTN was confirmed by chemo-attraction of human T-cells by chemotaxis demonstrating, for the first time, how this chemokine secreted by a food-grade prokaryote retains biological activity and chemoattracts T lymphocytes. This strain thus represents a feasible well-tolerated vector to deliver active LTN at a mucosal level.
Lipopolysaccharide induces tumor necrosis factor receptor-1 independent relocation of lymphocytes from the red pulp of the mouse spleen
ANNALS OF ANATOMY-ANATOMISCHER ANZEIGER
Authors: Lalic, Ivana M.; Bichele, Rudolf; Repar, Anja; Despotovic, Sanja Z.; Petricevic, Sasa; Laan, Martti; Peterson, Part; Westermann, Juergen; Milicevic, Zivana; Mirkov, Ivana; Milicevic, Novica M.
Abstract
It is well known that bacterial lipopolysaccharide (LPS) induces migration of several cellular populations within the spleen. However, there are no data about the impact of LPS on B and T lymphocytes present in the red pulp. Therefore, we used an experimental model in which we tested the effects of intravenously injected LPS on the molecular, cellular and structural changes of the spleen, with special reference to the red pulp lymphocytes. We discovered that LPS induced a massive relocation of B and T lymphocytes from the splenic red pulp, which was independent of the tumor necrosis factor receptor-1 signaling axis. Early after LPS treatment, quantitative real-time PCR analysis revealed the elevated levels of mRNA encoding numerous chemokines and proinflammatory cytokines (XCL1, CXCL9, CXCL10, CCL3, CCL4, CCL5, CCL17, CCL20, CCL22, TNFa and LT alpha) which affect the navigation and activities of B and T lymphocytes in the lymphoid tissues. An extreme increase in mRNA levels for CCL20 was detected in the white pulp of the LPS-treated mice. The CCL20-expressing cells were localized in the PALS. Some smaller CCL20-expressing cells were evenly dispersed in the B cell zone. Thus, our study provides new knowledge of how microbial products could be involved in shaping the structure of lymphatic organs. (C) 2018 Elsevier GmbH. All rights reserved.