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1 - 25 of 42 results for author:"Mattick J."Drop in Literature Citations

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Complex architecture and regulated expression of the Sox2ot locus during vertebrate development.

Amaral P.P., Neyt C., Wilkins S.J., Askarian-Amiri M.E., Sunkin S.M., Perkins A.C., Mattick J.S.

RNA 15:2013-2027(2009) · Mapped (6)

Tiny RNAs associated with transcription start sites in animals.

Taft R.J., Glazov E.A., Cloonan N., Simons C., Stephen S., Faulkner G.J., Lassmann T., Forrest A.R., Grimmond S.M., Schroder K. et al.

Nat. Genet. 41:572-578(2009) · Mapped (19)

Long noncoding RNAs in mouse embryonic stem cell pluripotency and differentiation.

Dinger M.E., Amaral P.P., Mercer T.R., Pang K.C., Bruce S.J., Gardiner B.B., Askarian-Amiri M.E., Ru K., Solda G., Simons C. et al.

Genome Res. 18:1433-1445(2008) · Mapped (12)

Evidence for control of splicing by alternative RNA secondary structures in Dipteran homothorax pre-mRNA.

Glazov E.A., Pheasant M., Nahkuri S., Mattick J.S.

RNA Biol 3:36-39(2006) · Mapped (1)

Discrimination of non-protein-coding transcripts from protein-coding mRNA.

Frith M.C., Bailey T.L., Kasukawa T., Mignone F., Kummerfeld S.K., Madera M., Sunkara S., Furuno M., Bult C.J., Quackenbush J. et al.

RNA Biol. 3:40-48(2006) · UniProtKB (3)

Antisense transcription in the mammalian transcriptome.

FANTOM Consortium

Science 309:1564-1566(2005) · UniProtKB (18,596)

The transcriptional landscape of the mammalian genome.

Carninci P., Kasukawa T., Katayama S., Gough J., Frith M.C., Maeda N., Oyama R., Ravasi T., Lenhard B., Wells C. et al.

Science 309:1559-1563(2005) · UniProtKB (27,417) · Mapped (5,721)

Pseudomonas aeruginosa fimL regulates multiple virulence functions by intersecting with Vfr-modulated pathways.

Whitchurch C.B., Beatson S.A., Comolli J.C., Jakobsen T., Sargent J.L., Bertrand J.J., West J., Klausen M., Waite L.L., Kang P.J. et al.

Mol. Microbiol. 55:1357-1378(2005) · UniProtKB (2)

Isolation and characterization of a new nucleolar protein, Nrap, that is conserved from yeast to humans.

Utama B., Kennedy D., Ru K., Mattick J.S.

Genes Cells 7:115-132(2002) · UniProtKB (2) · Mapped (4)

FAM deubiquitylating enzyme is essential for preimplantation mouse embryo development.

Pantaleon M., Kanai-Azuma M., Mattick J.S., Kaibuchi K., Kaye P.L., Wood S.A.

Mech. Dev. 109:151-160(2001) · Mapped (7)

Identification of vaccine candidate antigens from a genomic analysis of Porphyromonas gingivalis.

Ross B.C., Czajkowski L., Hocking D., Margetts M., Webb E., Rothel L., Patterson M., Agius C., Camuglia S., Reynolds E.C. et al.

Vaccine 19:4135-4142(2001) · UniProtKB (3)

UNCL, the mammalian homologue of UNC-50, is an inner nuclear membrane RNA-binding protein.

Fitzgerald J., Kennedy D., Viseshakul N., Cohen B.N., Mattick J., Bateman J.F., Forsayeth J.R.

Brain Res. 877:110-123(2000) · UniProtKB (4)

Identification of a novel gene, fimV, involved in twitching motility in Pseudomonas aeruginosa.

Semmler A.B., Whitchurch C.B., Leech A.J., Mattick J.S.

Microbiology 146:1321-1332(2000) · UniProtKB (4)

Co-localization of FAM and AF-6, the mammalian homologues of Drosophila faf and canoe, in mouse eye development.

Kanai-Azuma M., Mattick J.S., Kaibuchi K., Wood S.A.

Mech. Dev. 91:383-386(2000) · Mapped (7)

Molecular characterisation of Australian bovine enteroviruses.

McCarthy F.M., Smith G.A., Mattick J.S.

Vet. Microbiol. 68:71-81(1999) · UniProtKB (2)

Retinoic acid-dependent upregulation of mouse folate receptor-alpha expression in embryonic stem cells, and conservation of alternative splicing patterns.

Bolton J.A., Wood S.A., Kennedy D., Don R.H., Mattick J.S.

Gene 230:215-224(1999) · UniProtKB (2) · Mapped (1)

The Ras target AF-6 is a substrate of the fam deubiquitinating enzyme.

Taya S., Yamamoto T., Kano K., Kawano Y., Iwamatsu A., Tsuchiya T., Tanaka K., Kanai-Azuma M., Wood S.A., Mattick J.S. et al.

J. Cell Biol. 142:1053-1062(1998) · Mapped (9)

Identification of a mouse orthologue of the human ras-GAP-SH3-domain binding protein and structural confirmation that these proteins contain an RNA recognition motif.

Kennedy D., Wood S.A., Ramsdale T., Tam P.P., Steiner K.A., Mattick J.S.

Biomed. Pept. Proteins Nucleic Acids 2:93-99(1997) · UniProtKB (1) · Mapped (5)

Cloning and expression analysis of a novel mouse gene with sequence similarity to the Drosophila fat facets gene.

Wood S.A., Pascoe W.S., Ru K., Yamada T., Hirchenhain J., Kemler R., Mattick J.S.

Mech. Dev. 63:29-38(1997) · UniProtKB (1) · Mapped (3)

Identification of a gene, pilF, required for type 4 fimbrial biogenesis and twitching motility in Pseudomonas aeruginosa.

Watson A.A., Alm R.A., Mattick J.S.

Gene 180:49-56(1996) · UniProtKB (2)

Fimbrial biogenesis genes of Pseudomonas aeruginosa: pilW and pilX increase the similarity of type 4 fimbriae to the GSP protein-secretion systems and pilY1 encodes a gonococcal PilC homologue.

Alm R.A., Hallinan J.P., Watson A.A., Mattick J.S.

Mol. Microbiol. 22:161-173(1996) · UniProtKB (4)

The alginate regulator AlgR and an associated sensor FimS are required for twitching motility in Pseudomonas aeruginosa.

Whitchurch C.B., Alm R.A., Mattick J.S.

Proc. Natl. Acad. Sci. U.S.A. 93:9839-9843(1996) · UniProtKB (2)

Identification of two genes with prepilin-like leader sequences involved in type 4 fimbrial biogenesis in Pseudomonas aeruginosa.

Alm R.A., Mattick J.S.

J. Bacteriol. 178:3809-3817(1996) · UniProtKB (5)

Identification of a novel gene, pilZ, essential for type 4 fimbrial biogenesis in Pseudomonas aeruginosa.

Alm R.A., Bodero A.J., Free P.D., Mattick J.S.

J. Bacteriol. 178:46-53(1996) · UniProtKB (3)

PilS and PilR, a two-component transcriptional regulatory system controlling expression of type 4 fimbriae in Pseudomonas aeruginosa.

Hobbs M., Collie E.S.R., Free P.D., Livingston S.P., Mattick J.S.

Mol. Microbiol. 7:669-682(1993) · UniProtKB (8)

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