Browsing by Author Joya, Josephine

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Issue DateTitleAuthor(s)Citation
2008Divergent regulation of the sarcomere and the cytoskeletonFath, Thomas; Gunning, Peter; Hardeman, Edna; O'Neill, Geraldine; Schevzov, Galina; Hook, J; Joya, Josephine; Lemckert, F; Lin, Jianzhong; Puttur, Franz; Rajan, Sudarsan; Vlahovich, Nicole; Vrhoski, Bernadette; Wieczorek, David F; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Paediatrics & Child HealthDivergent regulation of the sarcomere and the cytoskeleton, Journal of Biological Chemistry, vol.283,(1),2008,pp 275-283
2011Hypertrophy and dietary tyrosine ameliorate the phenotypes of a mouse model of severe nemaline myopathyDomazetovska, Ana; North, Kathryn; Yang, Nan; Gunning, Peter; Hardeman, Edna; Hook, Jeff; Joya, Josephine; Kee, Anthony; Kettle, Emma; Lemckert, Frances A.; Mitchell, Christina A.; Nguyen, Mai-Anh T.; Robinson, Phillip James; Valova, Valentina A; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Paediatrics & Child HealthHypertrophy and dietary tyrosine ameliorate the phenotypes of a mouse model of severe nemaline myopathy, Brain: a journal of neurology, vol.134, Pt12, 2011,pp 3516-3529
2009Methylguanine DNA methyltransferase-mediated drug resistance-based selective enrichment and engraftment of transplanted stem cells in skeletal muscle.Gunning, Peter; Schevzov, Galina; Alexander, Ian E; Hardeman, Edna C; Hook, Jeff; Joya, Josephine; Kahatapitiya, Prathibha; Kramer, Belinda; Lee, Antonio; Liu, Renjing; McCowage, Geoffrey; Montarras, Didier; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Paediatrics & Child HealthMethylguanine DNA methyltransferase-mediated drug resistance-based selective enrichment and engraftment of transplanted stem cells in skeletal muscle., Stem Cells: the international journal of cell differentiation and proliferation, vol.27, N/A, 2009,pp 1098-1108
2004Muscle Weakness In A Mouse Model Of Nemaline Myopathy Can Be Reversed With Exercise And Reveals A Novel Myofiber Repair Mechanism.Ghoddusi, M; Hardeman, Edna; Joya, Josephine; Kee, Anthony; Nair-Shalliker, Visalini; Nguyen, Mai-Anh; Luther, Pradeep; Medicine; Children's Hospital Westmead: Childrens Medical Research Ins; Western Clinical School: Medicine (Westmead); Exercise & Sport Science; Medicine; Western Clinical School: Clinical Ophthal & Eye HealthMuscle Weakness In A Mouse Model Of Nemaline Myopathy Can Be Reversed With Exercise And Reveals A Novel Myofiber Repair Mechanism., Human Molecular Genetics, vol.13,(21),2004,pp 2633-2645
2006MusTRD can regulate postnatal fiber-specific expression.Guven, Kim; Hardeman, Edna; Hodgson, Vanessa; Issa, Laura; Joya, Josephine; Palmer, Stephen; Popovic, Kata; Santucci, Nicole; Western Clinical School: Medicine (Westmead); Children's Hospital Westmead: Childrens Medical Research Ins; Western Clinical School: Medicine (Westmead); Western Clinical School: Medicine (Westmead); Western Clinical School: Medicine (Westmead); Western Clinical School: Medicine (Westmead); Western Clinical School: Medicine (Westmead); Western Clinical School: Medicine (Westmead)MusTRD can regulate postnatal fiber-specific expression., Developmental Biology, vol.293,(1),2006,pp 104-115
2004Myofiber Adaptational Response To Exercise In A Mouse Model Of Nemaline Myopathy.Hardeman, Edna; Hoh, Joseph; Joya, Josephine; Lucas, Christine; Nair-Shalliker, Visalini; Kee, Anthony J.; Children's Hospital Westmead: Childrens Medical Research Ins; School of Medical Sciences: Physiology; Western Clinical School: Medicine (Westmead); School of Medical Sciences: Physiology; School of Public Health: Public HealthMyofiber Adaptational Response To Exercise In A Mouse Model Of Nemaline Myopathy., Muscle & Nerve, vol.30,(4),2004,pp 470-480
2005Specific Features of Neuronal Size and Shape Are Regulated by Tropomyosin IsoformsBryce, N; Gunning, Peter; Hardeman, Edna; Schevzov, Galina; Weinberger, Ronald; Almonte-Baldonado, Rowena; Joya, Josephine; Lin, Jim J.-C; Medicine; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Paediatrics & Child Health; MedicineSpecific Features of Neuronal Size and Shape Are Regulated by Tropomyosin Isoforms, Molecular Biology of the Cell 2005, vol.16,(7),2005,pp 3425-3437
2007Tropomyosin 4 defines novel filaments in skeletal muscle associated with muscle remodelling/regeneration in normal and diseased muscleGunning, Peter; Hardeman, Edna; Ilkovski, B; Kee, Anthony; North, Kathryn; Schevzov, Galina; Artap, Stanley T; Joya, Josephine; Nair-Shalliker, Visalini; Vlahovich, Nicole; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Childrens Medical Research Ins; Children's Hospital Westmead: Childrens Medical Research Ins; Exercise & Sport Science; Children's Hospital Westmead: Paediatrics & Child Health; Children's Hospital Westmead: Paediatrics & Child HealthTropomyosin 4 defines novel filaments in skeletal muscle associated with muscle remodelling/regeneration in normal and diseased muscle, Cell Motility and the Cytoskeleton, vol.65,(online 29 Oct 2007),2007,pp 73-85