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Hasel de Carvalho, E.

Publications and source records attributed to Hasel de Carvalho, E..

2 recordsLinked to original sources

Revisiting the origin of interleukin 1 (IL-1) based on biological activities of IL-1 in anamniotes and their sub-functionalization in amniotes

The cytokine Interleukin 1 (IL-1) is an evolutionary innovation of vertebrates. Fish and amphibia have one IL1 gene, while mammals have two copies of IL1, IL1A and IL1B, with distinct expression patterns and differences in their proteolytic activation. Our current understanding of the evolutionary history of IL-1 is mainly based on phylogenetic analyses, but this approach provides no information on potentially different functions of IL-1 homologs, and it remains unclear which biological activities identified for IL-1 and IL-1{beta} in mammals are present in lower vertebrates. Here, we use in vitro and in vivo experimental models to examine the expression patterns and cleavage of IL-1 proteins from various species. We found that IL-1 in the teleost medaka shares the transcriptional patterns of mammalian IL-1, and its processing also resembles that of mammalian IL-1, which is sensitive to cysteine protease inhibitors specific for the calpain and cathepsin families. By contrast, IL-1 proteins in reptiles also include biological properties of IL-1{beta}. Therefore, we propose that duplication of the ancestral IL1 gene led to segregation of expression patterns and protein processing that characterizes the two extant forms of IL-1 in mammals.

immunology↗

Optogenetic activators of apoptosis, necroptosis and pyroptosis for probing cell death dynamics and bystander cell responses

Targeted and specific induction of cell death in individual or groups of cells holds the potential for new insights into the response of tissues or organisms to different forms of death. Here we report the development of optogenetically-controlled cell death effectors (optoCDEs), a novel class of optogenetic tools that enables light-mediated induction of three types of programmed cell death (PCD) - apoptosis, pyroptosis and necroptosis - using Arabidopsis thaliana photosensitive protein Cryptochrome2. OptoCDEs enable rapid and highly specific induction of PCD in human, mouse and zebrafish cells and are suitable for a wide range of applications, such as sub-lethal cell death induction or precise elimination of single cells or cell populations in vitro and in vivo. As the proof-of-concept, we utilize optoCDEs to assess the differences in the neighboring cell response to apoptotic or necrotic PCD, revealing a new role for shingosine-1-phosphate signaling in regulating the efferocytosis of apoptotic cell by epithelia.

cell biology↗