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Biology subjects

Mullan, G.

Publications and source records attributed to Mullan, G..

2 recordsLinked to original sources

Spatial transcriptomics of compartmentalised inflammation in a natural disease multiple sclerosis cohort.

Compartmentalised inflammation is a poorly understood aspect of multiple sclerosis (MS) that is associated with worse outcomes and represents an important therapeutic target. To gain deeper insight into compartmentalised inflammation, we have taken the approach of digital spatial profiling of the whole human transcriptome in areas of perivascular and meningeal inflammation and tertiary lymphoid-like structures (TLS) in MS central nervous system tissue. Critically, we had access to rare archival tissue obtained before the era of disease-modifying therapies, representing a natural history of disease. This analysis has identified differentially expressed genes in TLS compared to meningeal or perivascular inflammation. Pathway analysis highlighted that TLS signalling is dominated by B cell activity including active antibody secretion. Our data demonstrated the diversity of immunoglobulins and the prominence of IgG3- and IgG4-secreting cells in TLS. Intriguingly, pathway analysis suggests TLS may be hubs for viral (re)activation which warrants further investigation. These findings provide insight into the function of TLS in MS disease pathogenesis and reveal unique immune signatures that may support biomarker development to predict which patients harbour TLS in life.

neuroscience↗

Ancient Borrelia genomes document the evolutionary history of louse-borne relapsing fever

Several disease-causing bacteria have transitioned from tick-borne to louse-borne transmission, a process associated with increased virulence and genome reduction. However, the historical time frame and speed of such evolutionary transitions have not been documented with ancient genomes. Here, we discover four ancient cases of Borrelia recurrentis, the causative agent of louse-borne relapsing fever, in Britain between [~]600 and 2,300 years ago, and sequence whole genomes up to 29-fold coverage. We estimate a recent divergence from the closest tick-borne ancestor, likely within the last [~]8,000 years. We reconstruct a chronology of gene losses and acquisitions using the pan-genome of related species, and show that almost all of the reductive evolution observed in B. recurrentis had occurred by [~]2,000 years ago, and was thus a rapid process after divergence. Our observations provide a new understanding of the origins of B. recurrentis and document complex reductive evolution in a specialist vector-borne pathogen.

evolutionary biology↗