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Domingues, M. M.

Publications and source records attributed to Domingues, M. M..

2 recordsLinked to original sources

Fibrinogen αC-subregions critically contribute blood clot fibre growth, mechanical stability and resistance to fibrinolysis

Fibrinogen is essential for blood coagulation. The C-terminus of the fibrinogen -chain (C-region) is composed of an C-domain and C-connector. Two recombinant fibrinogen variants (390 and 220) were produced to investigate the role of subregions in modulating clot stability and resistance to lysis. The 390 variant, truncated before the C-domain, produced clots with a denser structure and thinner fibres. In contrast, the 220 variant, truncated at the start of the C-connector, produced clots that were porous with short stunted fibres and visible fibre ends. These clots were mechanically weak and susceptible to lysis. Our data demonstrate differential effects for the C-subregions in fibrin polymerisation, clot mechanical strength, and fibrinolytic susceptibility. Furthermore, we demonstrate that the C-subregions are key for promoting longitudinal fibre growth. Together, these findings highlight critical functions of the C-subregions in relation to clot structure and stability, with future implications for development of novel therapeutics for thrombosis.

physiology↗

Epigenetic reprogramming by TET enzymes impacts co-transcriptional R-loops

DNA oxidation by ten-eleven translocation (TET) family enzymes is essential for epigenetic reprogramming. The conversion of 5-methylcytosine (5mC) into 5-hydroxymethylcytosine (5hmC) initiates developmental and cell-type-specific transcriptional programs through mechanisms that include changes in the chromatin structure. Here, we show that the presence of 5hmC in the transcribed DNA promotes the annealing of the nascent RNA to its template DNA strand, leading to the formation of an R-loop. The genome-wide distribution of 5hmC and R-loops show a positive correlation in mouse and human embryonic stem cells and overlap in half of all active genes. Moreover, R-loop resolution leads to differential expression of a subset of genes that are involved in crucial events during stem cell proliferation. Altogether, our data reveal that epigenetic reprogramming via TET activity promotes co-transcriptional R-loop formation, and disclose novel links between R-loops and the regulation of gene expression programs in stem cells.

molecular biology↗