Person:

Santoriello, Cristina

Loading...
Profile Picture

Email Address

AA Acceptance Date

Birth Date

Research Projects

Organizational Units

Job Title

Last Name

Santoriello

First Name

Cristina

Name

Santoriello, Cristina

Search Results

Now showing 1 - 3 of 3
  • Publication

    Regulation of per and cry Genes Reveals a Central Role for the D-Box Enhancer in Light-Dependent Gene Expression

    (Public Library of Science, 2012) Mracek, Philipp; Santoriello, Cristina; Idda, M. Laura; Pagano, Cristina; Ben-Moshe, Zohar; Gothilf, Yoav; Vallone, Daniela; Foulkes, Nicholas S.

    Light serves as a key environmental signal for synchronizing the circadian clock with the day night cycle. The zebrafish represents an attractive model for exploring how light influences the vertebrate clock mechanism. Direct illumination of most fish tissues and cell lines induces expression of a broad range of genes including DNA repair, stress response and key clock genes. We have previously identified D- and E-box elements within the promoter of the zebrafish per2 gene that together direct light-induced gene expression. However, is the combined regulation by E- and D-boxes a general feature for all light-induced gene expression? We have tackled this question by examining the regulation of additional light-inducible genes. Our results demonstrate that with the exception of per2, all other genes tested are not induced by light upon blocking of de novo protein synthesis. We reveal that a single D-box serves as the principal light responsive element within the cry1a promoter. Furthermore, upon inhibition of protein synthesis D-box mediated gene expression is abolished while the E-box confers light driven activation as observed in the per2 gene. Given the existence of different photoreceptors in fish cells, our results implicate the D-box enhancer as a general convergence point for light driven signaling.

  • Publication

    Mimicking p14ARF Phosphorylation Influences Its Ability to Restrain Cell Proliferation

    (Public Library of Science, 2013) Vivo, Maria; Ranieri, Michela; Sansone, Federica; Santoriello, Cristina; Calogero, Raffaele A.; Calabrò, Viola; Pollice, Alessandra; La Mantia, Girolama

    The INK4a/ARF locus on the short arm of chromosome 9 is one of the most frequently altered loci in human cancer. It is generally accepted that ARF is involved in oncogenic checkpoint pathways by sensitizing incipient cancer cells to undergo growth arrest or apoptosis through both p53-dependent and independent pathways. While intensive studies have been focused on ARF activation at the transcriptional level, only recently mechanisms governing ARF turnover have been identified. Here, we show for the first time that p14ARF is a PKC target. Prediction analysis showed many potential phosphorylation sites in PKC consensus sequences within ARF protein, and, among them, the threonine at position 8 was the most conserved. Substitution of this threonine influences both ARF stability and localization. Furthermore, a phosphomimetic ARF mutation reduces the ability to arrest cell growth although the ability to bind MDM2 and stabilize p53 result unaffected. Thus we propose that phosphorylation of ARF in both immortalized and tumor cell lines could be a mechanism to escape ARF surveillance following proliferative and oncogenic stress.

  • Publication

    RNA helicase DDX21 mediates nucleotide stress responses in neural crest and melanoma cells

    (Springer Science and Business Media LLC, 2020-03-30) Santoriello, Cristina; Sporrij, Audrey; Yang, Song; Flynn, Ryan; Henqriques, Telmo; Dorjsuren, Bilguujin; Custo Greig, Eugenia; McCall, Wyatt; Stanhope, Meredith; Fazio, Maurizio; Superdock, Michael; Adatto, Isaac; Abraham, Brian; Kalocsay, Marian; Jurynec, Michael; Zhou, Yi; Adelman, Karen; Calo, Elizier; Zon, Leonard

    The availability of nucleotides has a direct impact on transcription. Inhibition of dihydroorate dehydrogenase (DHODH) with leflunomide impacts nucleotide pools by reducing pyrimidine levels. Leflunomide abrogates effective transcription elongation of genes required for neural crest development and melanoma growth in vivo1. To define the mechanism of action, we undertook an in vivo chemical suppressor screen for restoration of neural crest after leflunomide treatment. Surprisingly, we found that alterations in progesterone and progesterone receptor (Pgr) signalling strongly suppressed leflunomide-mediated neural crest effects in zebrafish. Progesterone additionally bypasses the transcriptional elongation block resulting from Paf complex deficiency, rescuing neural crest defects in ctr9 morphant and paf1(alnz24) mutant embryos. Using proteomics, we found that Pgr binds the RNA helicase protein Ddx21. Ddx21-deficient zebrafish show resistance to leflunomide-induced stress. On a molecular level, nucleotide depletion reduced the chromatin occupancy of DDX21 in human A375 melanoma cells. Nucleotide supplementation reversed the gene expression and DDX21 occupancy changes prompted by leflunomide. Together, our results show that DDX21 acts as a sensor and mediator of transcription during nucleotide stress.