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Vilarinho, S.

Publications and source records attributed to Vilarinho, S..

2 recordsLinked to original sources

Human immunodeficiency reveals GIMAP5 as lymphocyte-specific regulator of senescence

Elucidating the molecular basis of immunodeficiency diseases is a powerful approach to discovering new immunoregulatory pathways in humans. Here we report 10 affected individuals from 4 families with a new immunodeficiency disease comprising of severe progressive lymphopenia, autoimmunity, immunodeficiency, and liver disease due to recessive loss of function variants in "GTPase of immunity-associated proteins" protein 5 (GIMAP5). We show that the disease involves the progressive loss of naive T lymphocytes and a corresponding increase in antigen-experienced, but poorly functional and replicatively senescent T cells. In vivo treatment of Gimap5-deficient mice with rapamycin (an inhibitor of mTORC1) significantly restores the fraction of naive T lymphocytes. Furthermore, a GIMAP5-deficient human patient who was treated with rapamycin (sirolimus) showed a remarkable reduction in spleen/lymph node size. Together, these observations reveal that GIMAP5 plays a critical role in lymphocyte metabolism which is essential for senescence prevention and immune competence, suggesting that an inhibitor of mTORC1 could be a valuable clinical intervention in treating patients deficient for GIMAP5.

immunology

A Single Cell Gene Expression Atlas of 28 Human Livers

The liver is the largest solid organ in the human body and is responsible for a multitude of essential functions for survival. Chronic liver injury affects over 1 billion people worldwide and therapeutic options other than liver transplantation are a critical unmet medical need. Thus, advances in molecular hepatology are essential to facilitate the discovery of new therapeutic targets. Here we describe the aggregation and integration of single cell RNA-sequencing in more than 36,000 cells from 28 human livers reported in five independent studies. Noteworthy, the merged data shows a high degree of overlap, demonstrating the robustness of liver gene expression at single cell level independent of age, gender, liver collection, processing and sequencing methods. Hence, this data allowed us to develop a user-friendly web browser for quick and easy interrogation and comparison of gene expression across a variety of parenchymal and non-parenchymal liver cell populations. Collectively, this study provides the largest human liver transcriptomic single cell atlas accessible for interactive visualization via an open-access web portal to the research community worldwide.

genomics