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Items: 14

1.

[Emergency room management of patients with lung cancer and organ failure].

Collart C, Moro-Sibilot D, Maignan M, Schwebel C, Giaj Levra M, Ferrer L, Paquier C, Viglino D, Toffart AC.

Rev Mal Respir. 2019 Jun;36(6):672-678. doi: 10.1016/j.rmr.2019.03.013. Epub 2019 Jun 27. French.

PMID:
31255316
2.

Chk1 Inhibition of the Replication Factor Drf1 Guarantees Cell-Cycle Elongation at the Xenopus laevis Mid-blastula Transition.

Collart C, Smith JC, Zegerman P.

Dev Cell. 2017 Jul 10;42(1):82-96.e3. doi: 10.1016/j.devcel.2017.06.010.

3.

High-resolution analysis of gene activity during the Xenopus mid-blastula transition.

Collart C, Owens ND, Bhaw-Rosun L, Cooper B, De Domenico E, Patrushev I, Sesay AK, Smith JN, Smith JC, Gilchrist MJ.

Development. 2014 May;141(9):1927-39. doi: 10.1242/dev.102012.

4.

Titration of four replication factors is essential for the Xenopus laevis midblastula transition.

Collart C, Allen GE, Bradshaw CR, Smith JC, Zegerman P.

Science. 2013 Aug 23;341(6148):893-6. doi: 10.1126/science.1241530. Epub 2013 Aug 1.

5.

Few Smad proteins and many Smad-interacting proteins yield multiple functions and action modes in TGFβ/BMP signaling in vivo.

Conidi A, Cazzola S, Beets K, Coddens K, Collart C, Cornelis F, Cox L, Joke D, Dobreva MP, Dries R, Esguerra C, Francis A, Ibrahimi A, Kroes R, Lesage F, Maas E, Moya I, Pereira PN, Stappers E, Stryjewska A, van den Berghe V, Vermeire L, Verstappen G, Seuntjens E, Umans L, Zwijsen A, Huylebroeck D.

Cytokine Growth Factor Rev. 2011 Oct-Dec;22(5-6):287-300. doi: 10.1016/j.cytogfr.2011.11.006. Epub 2011 Nov 26. Review.

PMID:
22119658
6.

The midblastula transition defines the onset of Y RNA-dependent DNA replication in Xenopus laevis.

Collart C, Christov CP, Smith JC, Krude T.

Mol Cell Biol. 2011 Sep;31(18):3857-70. doi: 10.1128/MCB.05411-11. Epub 2011 Jul 26.

7.

Smicl is required for phosphorylation of RNA polymerase II and affects 3'-end processing of RNA at the midblastula transition in Xenopus.

Collart C, Ramis JM, Down TA, Smith JC.

Development. 2009 Oct;136(20):3451-61. doi: 10.1242/dev.027714.

8.
9.

Defining synphenotype groups in Xenopus tropicalis by use of antisense morpholino oligonucleotides.

Rana AA, Collart C, Gilchrist MJ, Smith JC.

PLoS Genet. 2006 Nov 17;2(11):e193. Epub 2006 Oct 4.

10.

The novel Smad-interacting protein Smicl regulates Chordin expression in the Xenopus embryo.

Collart C, Verschueren K, Rana A, Smith JC, Huylebroeck D.

Development. 2005 Oct;132(20):4575-86.

11.

Smicl is a novel Smad interacting protein and cleavage and polyadenylation specificity factor associated protein.

Collart C, Remacle JE, Barabino S, van Grunsven LA, Nelles L, Schellens A, Van de Putte T, Pype S, Huylebroeck D, Verschueren K.

Genes Cells. 2005 Sep;10(9):897-906.

12.

Transforming growth factor beta signalling in vitro and in vivo: activin ligand-receptor interaction, Smad5 in vasculogenesis, and repression of target genes by the deltaEF1/ZEB-related SIP1 in the vertebrate embryo.

Zwijsen A, van Grunsven LA, Bosman EA, Collart C, Nelles L, Umans L, Van de Putte T, Wuytens G, Huylebroeck D, Verschueren K.

Mol Cell Endocrinol. 2001 Jun 30;180(1-2):13-24. Review.

PMID:
11451567
13.

New mode of DNA binding of multi-zinc finger transcription factors: deltaEF1 family members bind with two hands to two target sites.

Remacle JE, Kraft H, Lerchner W, Wuytens G, Collart C, Verschueren K, Smith JC, Huylebroeck D.

EMBO J. 1999 Sep 15;18(18):5073-84.

14.

SIP1, a novel zinc finger/homeodomain repressor, interacts with Smad proteins and binds to 5'-CACCT sequences in candidate target genes.

Verschueren K, Remacle JE, Collart C, Kraft H, Baker BS, Tylzanowski P, Nelles L, Wuytens G, Su MT, Bodmer R, Smith JC, Huylebroeck D.

J Biol Chem. 1999 Jul 16;274(29):20489-98.

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