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Page 1
Next generation sequencing methodologies--an overview.
Pickrell WO, Rees MI, Chung SK. Pickrell WO, et al. Among authors: rees mi. Adv Protein Chem Struct Biol. 2012;89:1-26. doi: 10.1016/B978-0-12-394287-6.00001-X. Adv Protein Chem Struct Biol. 2012. PMID: 23046880 Review.
Mutations in the gene encoding GlyT2 (SLC6A5) define a presynaptic component of human startle disease.
Rees MI, Harvey K, Pearce BR, Chung SK, Duguid IC, Thomas P, Beatty S, Graham GE, Armstrong L, Shiang R, Abbott KJ, Zuberi SM, Stephenson JB, Owen MJ, Tijssen MA, van den Maagdenberg AM, Smart TG, Supplisson S, Harvey RJ. Rees MI, et al. Nat Genet. 2006 Jul;38(7):801-6. doi: 10.1038/ng1814. Epub 2006 Jun 4. Nat Genet. 2006. PMID: 16751771 Free PMC article.
The glycinergic system in human startle disease: a genetic screening approach.
Davies JS, Chung SK, Thomas RH, Robinson A, Hammond CL, Mullins JG, Carta E, Pearce BR, Harvey K, Harvey RJ, Rees MI. Davies JS, et al. Among authors: rees mi. Front Mol Neurosci. 2010 Mar 23;3:8. doi: 10.3389/fnmol.2010.00008. eCollection 2010. Front Mol Neurosci. 2010. PMID: 20407582 Free PMC article.
Pathophysiological mechanisms of dominant and recessive GLRA1 mutations in hyperekplexia.
Chung SK, Vanbellinghen JF, Mullins JG, Robinson A, Hantke J, Hammond CL, Gilbert DF, Freilinger M, Ryan M, Kruer MC, Masri A, Gurses C, Ferrie C, Harvey K, Shiang R, Christodoulou J, Andermann F, Andermann E, Thomas RH, Harvey RJ, Lynch JW, Rees MI. Chung SK, et al. Among authors: rees mi. J Neurosci. 2010 Jul 14;30(28):9612-20. doi: 10.1523/JNEUROSCI.1763-10.2010. J Neurosci. 2010. PMID: 20631190 Free PMC article.
Mutations in the GlyT2 gene (SLC6A5) are a second major cause of startle disease.
Carta E, Chung SK, James VM, Robinson A, Gill JL, Remy N, Vanbellinghen JF, Drew CJ, Cagdas S, Cameron D, Cowan FM, Del Toro M, Graham GE, Manzur AY, Masri A, Rivera S, Scalais E, Shiang R, Sinclair K, Stuart CA, Tijssen MA, Wise G, Zuberi SM, Harvey K, Pearce BR, Topf M, Thomas RH, Supplisson S, Rees MI, Harvey RJ. Carta E, et al. Among authors: rees mi. J Biol Chem. 2012 Aug 17;287(34):28975-85. doi: 10.1074/jbc.M112.372094. Epub 2012 Jun 14. J Biol Chem. 2012. PMID: 22700964 Free PMC article. Clinical Trial.
GLRB is the third major gene of effect in hyperekplexia.
Chung SK, Bode A, Cushion TD, Thomas RH, Hunt C, Wood SE, Pickrell WO, Drew CJ, Yamashita S, Shiang R, Leiz S, Longardt AC, Raile V, Weschke B, Puri RD, Verma IC, Harvey RJ, Ratnasinghe DD, Parker M, Rittey C, Masri A, Lingappa L, Howell OW, Vanbellinghen JF, Mullins JG, Lynch JW, Rees MI. Chung SK, et al. Among authors: rees mi. Hum Mol Genet. 2013 Mar 1;22(5):927-40. doi: 10.1093/hmg/dds498. Epub 2012 Nov 25. Hum Mol Genet. 2013. PMID: 23184146
Overlapping cortical malformations and mutations in TUBB2B and TUBA1A.
Cushion TD, Dobyns WB, Mullins JG, Stoodley N, Chung SK, Fry AE, Hehr U, Gunny R, Aylsworth AS, Prabhakar P, Uyanik G, Rankin J, Rees MI, Pilz DT. Cushion TD, et al. Among authors: rees mi. Brain. 2013 Feb;136(Pt 2):536-48. doi: 10.1093/brain/aws338. Epub 2013 Jan 29. Brain. 2013. PMID: 23361065
New hyperekplexia mutations provide insight into glycine receptor assembly, trafficking, and activation mechanisms.
Bode A, Wood SE, Mullins JGL, Keramidas A, Cushion TD, Thomas RH, Pickrell WO, Drew CJG, Masri A, Jones EA, Vassallo G, Born AP, Alehan F, Aharoni S, Bannasch G, Bartsch M, Kara B, Krause A, Karam EG, Matta S, Jain V, Mandel H, Freilinger M, Graham GE, Hobson E, Chatfield S, Vincent-Delorme C, Rahme JE, Afawi Z, Berkovic SF, Howell OW, Vanbellinghen JF, Rees MI, Chung SK, Lynch JW. Bode A, et al. Among authors: rees mi. J Biol Chem. 2013 Nov 22;288(47):33745-33759. doi: 10.1074/jbc.M113.509240. Epub 2013 Oct 9. J Biol Chem. 2013. PMID: 24108130 Free PMC article. Clinical Trial.
123 results