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Biomedical subjects

C Pujades

Publications and source records attributed to C Pujades.

11 recordsLinked to original sources

Hindbrain patterning: Krox20 couples segmentation and specification of regional identity.

We have previously demonstrated that inactivation of the Krox20 gene led to the disappearance of its segmental expression territories in the hindbrain, the rhombomeres (r) 3 and 5. We now performed a detailed analysis of the fate of prospective r3 and r5 cells in Krox20 mutant embryos. Genetic fate mapping indicates that at least some of these cells persist in the absence of a functional Krox20 protein and uncovers the requirement for autoregulatory mechanisms in the expansion and maintenance of Krox20-expressing territories. Analysis of even-numbered rhombomere molecular markers demonstrates that in Krox20-null embryos, r3 cells acquire r2 or r4 identity, and r5 cells acquire r6 identity. Finally, study of embryonic chimaeras between Krox20 homozygous mutant and wild-type cells shows that the mingling properties of r3/r5 mutant cells are changed towards those of even-numbered rhombomere cells. Together, these data demonstrate that Krox20 is essential to the generation of alternating odd- and even-numbered territories in the hindbrain and that it acts by coupling the processes of segment formation, cell segregation and specification of regional identity.

Animals↗

HEMCAM/CD146 downregulates cell surface expression of beta1 integrins.

HEMCAM/gicerin, an immunoglobulin superfamily protein, is involved in homophilic and heterophilic adhesion. It interacts with NOF (neurite outgrowth factor), a molecule of the laminin family. Alternative splicing leads to mRNAs coding for HEMCAM with a short (HEMCAM-s) or a long cytoplasmic tail (HEMCAM-l). To investigate the cellular function of these two variants, we stably transfected murine fibroblasts with either form of HEMCAM. Expression of each isoform of this protein in L cells delayed proliferation and modified their adhesion properties to purified extracellular matrix proteins. Expression of either HEMCAM-s or HEMCAM-l inhibited integrin-dependent adhesion and spreading of fibroblasts to laminin 1, showing that this phenomenon did not depend on the cytoplasmic region. By contrast, L-cell adhesion and spreading to fibronectin depended on the HEMCAM isoform expressed. Flow cytometry and immunoprecipitation studies revealed that the expression of HEMCAM downregulated expression of the laminin-binding integrins alpha3beta1, alpha6beta1 and alpha7beta1, and fibronectin receptor alpha5beta1 from the cell surface. Semi-quantitative PCR and northern blot experiments showed that the expression of alpha6beta1 integrin modified by HEMCAM occurred at a translation or maturation level. Thus, our data demonstrate that HEMCAM regulates fibroblast adhesion by controlling beta1 integrin expression.

Animals↗

Hoxa1 and Krox-20 synergize to control the development of rhombomere 3.

The transcription factor genes Hoxa1 and Krox-20 have been shown to play important roles in vertebrate hindbrain segmentation. In this report, we present evidence for novel functions of these genes which co-operate in specifying cellular identity in rhombomere (r) 3. Although Hoxa1 has not been observed to be expressed rostrally to the prospective r3/r4 boundary, its inactivation results in (i) the appearance of patches of cells presenting an r2-like molecular identity within r3, (ii) early neuronal differentiation in r3, normally characteristic of even-numbered rhombomeres, and (iii) abnormal navigation of r3 motor axons, similar to that observed in even-numbered rhombomeres. These phenotypic manifestations become more severe in the context of the additional inactivation of one allele of the Krox-20 gene, demonstrating that Hoxa1 and Krox-20 synergize in a dosage-dependent manner to specify r3 identity and odd- versus even-numbered rhombomere characters. In addition, these data suggest that the control of the development of r3 may not be autonomous but dependent on interactions with Hoxa1-expressing cells.

Animals↗

Integrin alpha chain cytoplasmic tails regulate "antibody-redirected" cell adhesion, independently of ligand binding.

Here we describe a novel "antibody-redirected cell adhesion" (ARCA) assay. This assay measures heterotypic cell-cell adhesion, resulting from antibody bridging between Fc gamma receptors type II (CD32) on leukocytes, and clustered integrins on adherent cell monolayers. This ARCA activity, facilitated by integrins alpha3 beta1 or alpha4 beta1, required an intact cytoskeleton, but did not involve typical integrin ligand binding sites or divalent cations. Furthermore, deletion of the alpha4 cytoplasmic tail almost completely abrogated integrin ARCA activity, suggesting an alteration of integrin recruitment into adhesive sites. If two or more tail residues were present after the conserved GFFKR motif, then ARCA activity was largely restored. Although alpha4 tail deletion caused loss of ARCA activity, it had no effect on the binding of VCAM-1 to intact alpha4-transfected K562 cells. In conclusion, the integrin alpha chain tail can positively regulate integrin-dependent cell adhesion by a receptor recruitment/clustering mechanism independent of conventional integrin ligand-binding considerations.

Actin Cytoskeleton↗

Defining extracellular integrin alpha-chain sites that affect cell adhesion and adhesion strengthening without altering soluble ligand binding.

It was previously shown that mutations of integrin alpha4 chain sites, within putative EF-hand-type divalent cation-binding domains, each caused a marked reduction in alpha4beta1-dependent cell adhesion. Some reports have suggested that alpha-chain "EF-hand" sites may interact directly with ligands. However, we show here that mutations of three different alpha4 "EF-hand" sites each had no effect on binding of soluble monovalent or bivalent vascular cell adhesion molecule 1 whether measured indirectly or directly. Furthermore, these mutations had minimal effect on alpha4beta1-dependent cell tethering to vascular cell adhesion molecule 1 under shear. However, EF-hand mutants did show severe impairments in cellular resistance to detachment under shear flow. Thus, mutation of integrin alpha4 "EF-hand-like" sites may impair 1) static cell adhesion and 2) adhesion strengthening under shear flow by a mechanism that does not involve alterations of initial ligand binding.

Amino Acid Sequence↗

Integrin alpha 4 cysteines 278 and 717 modulate VLA-4 ligand binding and also contribute to alpha 4/180 formation.

Here we describe experiments in which we mutated four of the six integrin alpha 4 subunit cysteine residues that are not present in most other integrin alpha subunits that lack an I domain. In four different types of ligand binding assay we found that optimal integrin alpha 4 beta 1 and/or to CS1 peptide required the presence of both alpha 4 Cys 278 and Cys 717. In addition, optimal ligand binding required divalent cations and reduced cysteines, as evidenced by EDTA and N-ethylmaleimide inhibition results. In a control experiment, an alpha 4 mutation that completely eliminated the alpha 4 80/70 proteolytic cleavage site had no effect on ligand binding. Notably, although Cys 278 an Cys 717 mutations markedly altered ligand binding, they had no adverse effect on cell adhesion. Thus, compared with cell adhesion, ligand binding is a distinct and apparently more stringent test of VLA-4 integrin-ligand interactions. In addition, we have established that the formation of the previously described alpha 4/180 [Parker, Pujades, Brenner and Hemler (1993) J. Biol. Chem. 268, 7028-2035] also requires Cys 278 and Cys 717, divalent cations and reduced cysteines. thus alpha 4/180 appears to be more functionally relevant than alpha 4/150.

Animals↗

Alpha 4/180, a novel form of the integrin alpha 4 subunit.

The integrin alpha 4 beta 1 (VLA-4) is a versatile cell-cell and cell-extracellular matrix adhesion receptor. The alpha 4 subunit can be expressed on the cell surface in two forms: an intact form (alpha 4/150) and a cleaved form (alpha 4/80,70). Here we have characterized a third form of alpha 4, called alpha 4/180. Although alpha 4/180 (M(r) 180, nonreduced) is different in size than alpha 4/150 (M(r) 150, nonreduced), these two forms are clearly related, as they (i) shared the same amino-terminal sequence, (ii) were both recognized in Western blots by an anti-alpha 4 COOH-terminal antiserum, (iii) migrated with the same apparent size and charge when reduced, and (iv) were both immunoprecipitated using anti-VLA-4 reagents. In pulse-chase experiments, precursors to both forms appeared simultaneously and matured at the same rate, indicating that one is most likely not the biosynthetic precursor of the other. Although reduction of alpha 4/180 to yield alpha 4/150 suggested the release of a cysteine-linked 30-kDa fragment, seven different biochemical techniques failed to identify such a fragment. Also, alpha 4/180 was converted to alpha 4/150 by incubation at pH 11, by treatment with EDTA at 56 degrees C, or by heating in the presence of elevated SDS levels. Together our findings suggest that alpha 4/180 and alpha 4/150 represent different conformations of the same alpha 4 polypeptide, with the former having anomalous slower migration in SDS-polyacrylamide gel electrophoresis. This unusual biochemical feature of alpha 4 is not shared by other beta 1-associated integrin alpha subunits and suggests that VLA-4 has unique structural properties.

Alternative Splicing↗

Increase of cytokeratin D during liver regeneration: association with the nuclear matrix.

An increase of a 45 kD protein (p45) in the nuclear matrix has been observed when rat liver cells were proliferatively activated in vivo by a partial hepatectomy. The maximal levels of the association of p45 with the nuclear matrix have been detected 24 hr after hepatectomy just at the time when DNA replication is also maximal. By amino acid sequence analysis, immunoblotting and immunocytochemical methods, it has been demonstrated that p45 is identical to rat cytokeratin D. Immunogold staining of nuclear matrix-intermediate filament preparations from cultured hepatocytes indicated that p45 is associated with cytoskeletal filaments that are strongly interconnected to the lamina, whereas no intranuclear localization of the protein has been detected. With an overlay assay a specific binding of labeled p45 to two nonidentified high-molecular weight proteins and also to lamin B has been observed. Northern blot analysis revealed a biphasic pattern of expression of the messenger RNA for cytokeratin D during liver regeneration. A sharp increase in the messenger RNA levels occurred in the prereplicative phase of liver regeneration a few hours before the accumulation of the protein in the nuclear matrix fraction, and a second peak occurred 48 hr after partial hepatectomy.

Amino Acid Sequence↗

Changes in cell surface expression of fibronectin and fibronectin receptor during liver regeneration.

The surface expression of fibronectin and its major integrin receptor in liver, integrin alpha 5 beta 1, was studied during liver regeneration after partial hepatectomy. Using immunoblotting, plasma membranes isolated from livers at different regeneration stages were found to contain 6- to 8-fold elevated levels of fibronectin, alpha 5 and beta 1 at 12-24 h after the operation. Normal levels were gradually restored during the following 8-9 days. The membrane-associated fibronectin lacked the ED-A domain, suggesting that it consisted of plasma fibronectin. A prominent fibronectin fragment (180 kDa) was present at 12-24 h after surgery, possibly reflecting turnover of the pericellular matrix during cell division. Indirect immunohistochemical staining of liver sections revealed beta 1 and fibronectin mainly in the sinusoidal region of the hepatocyte plasma membrane. The distribution was not markedly altered during liver regeneration. The results suggest that the fibronectin-mediated contacts between the cells and the extracellular matrix increase during the pre-replicative and proliferative phases of liver regeneration. The significance of these results for the growth and for the structure of the liver during regeneration and development is discussed.

Animals↗

Decrease of calmodulin and actin in the plasma membrane of rat liver cells during proliferative activation.

After proliferative activation of rat liver cells in vivo by a partial hepatectomy a decrease of the calmodulin content in the three plasma membrane domains (blood sinusoidal, canalicular and lateral) was observed. At 24 hours after partial hepatectomy calmodulin was found to be 3 fold lower in the sinusoidal and lateral fractions whereas a 2 fold decrease was detected in the canalicular domain. Decreases on the actin levels have been also detected at 24 hours after a partial hepatectomy. Since at this time after surgery increases on nuclear actin and calmodulin have been reported, these results suggest the possibility that the actin and calmodulin dissociated from the plasma membrane after a partial hepatectomy could subsequently be translocated into the nuclei.

Actins↗

Increase in a 55-kDa keratin-like protein in the nuclear matrix of rat liver cells during proliferative activation.

We have identified a protein (p55) with a molecular weight of 55 kDa and a pI of 6.2, which was strongly increased in the nuclear matrix of rat liver cells during proliferative activation. This protein is highly insoluble since it could not be solubilized either by detergents or by alkaline extraction. We have obtained three partial amino acid sequences which revealed that p55 has a high homology with cytokeratins. Polyclonal antibodies raised against p55 were used to carry out Western blot and immunocytochemical studies which indicated that p55 was localized only in the nuclei, specifically in the nuclear matrix. Autoradiographic experiments revealed that not all the cells presenting an increase in p55 incorporated [3H]thymidine, indicating that this protein is not related to DNA replication. Immunocytochemical studies also revealed that during mitosis p55 is localized surrounding the chromosomes and associated with the mitotic apparatus, suggesting that p55 is involved in the separation of chromosomes during cell division.

Amino Acid Sequence↗