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Makino, M.

Publications and source records attributed to Makino, M..

2 recordsLinked to original sources

A novel recombinant BCG vaccine using a mycobacteriophage promoter shows improved protection against tuberculosis

The limited efficacy of conventional bacillus Calmette-Guerin (BCG) vaccination against adult pulmonary tuberculosis highlights the need for improved vaccine strategies. Genome integration can overcome the plasmid instability of recombinant BCG, but we hypothesized that this approach would be constrained by reduced transcriptional activity of conventional promoters when present as a single genomic copy. Here we identified P79, a mycobacteriophage-derived promoter that sustains high-level expression from a single genomic locus and used it to construct a genome-integrated recombinant BCG, termed LRC-BCG. LRC-BCG secretes the HSP70-MMPII fusion antigen flanked by the PEST sequences, maintained stable antigen expression over serial passages, and induced strong activation of macrophages and dendritic cells in vitro. In vivo, LRC-BCG inhibited Mycobacterium tuberculosis multiplication more effectively than conventional BCG, even at low doses. These findings demonstrate the feasibility of using P79 for stable genome-integrated recombinant BCG and support LRC-BCG as a promising tuberculosis vaccine candidate.

microbiology↗

Boundary-guided cell alignment drives mouse epiblast maturation

Symmetry breaking and pattern formation are critical events that occur throughout embryonic development. In early mouse development, a mass of non-polarized epiblast (EPI) cells in the blastocyst forms the egg-cylinder, while cells become apico-basally polarized and build a radial configuration. Yet, what drives the formation of this tissue architecture remains unclear. Here, we demonstrate that orientational patterning of EPI cells is dictated by heterogeneous tissue boundaries, which then defines central lumen positioning. We show that EPI cells progressively orient perpendicular to the visceral endoderm (VE) boundary enriched with laminin and active integrin {beta}1, but parallel to the extraembryonic ectoderm interface. These orientation dynamics are consistent with general boundary-induced alignment effects in polar materials, with a topological defect predicting the position where the pro-amniotic cavity nucleates. Knockout of laminin {gamma}1 and integrin {beta}1 confirms the essential role of adhesion at the EPI-VE-boundary. The established EPI pattern, in turn, facilitates ERK activation to ensure proper EPI maturation. Together, these findings present the mechanistic basis and functional significance of EPI tissue patterning.

developmental biology↗