Search bioRxivSearch

Biology subjects

Bigas, A.

Publications and source records attributed to Bigas, A..

2 recordsLinked to original sources

Ancestral function of Inhibitors-of-kappaB regulates Caenorhabditis elegans development

Mammalian I{kappa}B proteins (I{kappa}Bs) exert their main function as negative regulators of NF-{kappa}B, a central signaling pathway controlling immunity and inflammation. An alternative chromatin role for I{kappa}Bs has been shown to affect stemness and cell differentiation. However, the involvement of NF-{kappa}B in this function has not been excluded. NFKI-1 and IKB-1 are I{kappa}B homologs in Caenorhabditis elegans, which lacks NF-{kappa}B nuclear effectors. We found that nfki-1 and ikb-1 mutants display developmental defects that phenocopy mutations in Polycomb and UTX-1 histone demethylase, suggesting a role for C. elegans I{kappa}Bs in chromatin regulation. Further supporting this possibility (i) we detected NFKI-1 in the nucleus of cells; (ii) NFKI-1 and IKB-1 bind to histones and Polycomb proteins, (iii) and associate with chromatin in vivo, and (iv) mutations in nfki-1 and ikb-1 alter chromatin marks. Based on these results, we propose that ancestral I{kappa}B inhibitors modulate Polycomb activity at specific gene subsets with an impact on development.

developmental biology

Notch ligand Dll4 impairs cell recruitment into aortic clusters and limits hematopoietic stem cells

Hematopoietic stem cells (HSCs) develop from the hemogenic endothelium in cluster structures that protrude into the embryonic aortic lumen. Although much is known about the molecular characteristics of the developing hematopoietic cells, we lack a complete understanding of their origin and the three-dimensional organization of the niche. Here we use advanced live imaging techniques of organotypic slice cultures, clonal analysis, and mathematical modelling to show the two-step process of intra-aortic hematopoietic cluster (IACH) formation. First, a hemogenic progenitor buds up from the endothelium and undergoes division forming the monoclonal core of the IAHC. Next, surrounding hemogenic cells are recruited into the IAHC, increasing their size and heterogeneity. We identified the Notch ligand Dll4 as a negative regulator of the recruitment phase of IAHC. Blocking of Dll4 promotes the entrance of new hemogenic Gfi1+ cells into the IAHC and increases the number of cells that acquire HSC activity. Mathematical modelling based on our data provides estimation of the cluster lifetime and the average recruitment time of hemogenic cells to the cluster under physiologic and Dll4-inhibited conditions.

developmental biology