Laforin, the dual-phosphatase responsible for Lafora disease, interacts with R5 (PTG), a regulatory subunit of protein phosphatase-1 that enhances glycogen accumulation

被引:85
作者
Fernández-Sánchez, ME
Criado-García, O
Heath, KE
García-Fojeda, B
Medraño-Fernández, I
Gomez-Garre, P
Sanz, P
Serratosa, JM
de Córdoba, SR
机构
[1] CSIC, Ctr Invest Biol, Dept Inmunol, Madrid 28040, Spain
[2] Fdn Jimenez Diaz, Serv Neurol, Madrid, Spain
[3] CSIC, Inst Biomed Valencia, Valencia, Spain
关键词
D O I
10.1093/hmg/ddg340
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Progressive myoclonus epilepsy of Lafora type (LD, MIM 254780) is a fatal autosomal recessive disorder characterized by the presence of progressive neurological deterioration, myoclonus, epilepsy and polyglucosan intracellular inclusion bodies, called Lafora bodies. Lafora bodies resemble glycogen with reduced branching, suggesting an alteration in glycogen metabolism. Linkage analysis and homozygosity mapping localized EPM2A, a major gene for LD, to chromosome 6q24. EPM2A encodes a protein of 331 amino acids (named laforin) with two domains, a dual-specificity phosphatase domain and a carbohydrate binding domain. Here we show that, in addition, laforin interacts with itself and with the glycogen targeting regulatory subunit R5 of protein phosphatase 1 (PP1). R5 is the human homolog of the murine Protein Targeting to Glycogen, a protein that also acts as a molecular scaffold assembling PP1 with its substrate, glycogen synthase, at the intracellular glycogen particles. The laforin-R5 interaction was confirmed by pull-down and co-localization experiments. Full-length laforin is required for the interaction. However, a minimal central region of R5 (amino acids 116-238), including the binding sites for glycogen and for glycogen synthase, is sufficient to interact with laforin. Point-mutagenesis of the glycogen synthase-binding site completely blocked the interaction with laforin. The majority of the EPM2A missense mutations found in LD patients result in lack of phosphatase activity, absence of binding to glycogen and lack of interaction with R5. Interestingly, we have found that the LD-associated EPM2A missense mutation G240S has no effect on the phosphatase or glycogen binding activities of laforin but disrupts the interaction with R5, suggesting that binding to R5 is critical for the laforin function. These results place laforin in the context of a multiprotein complex associated with intracellular glycogen particles, reinforcing the concept that laforin is involved in the regulation of glycogen metabolism.
引用
收藏
页码:3161 / 3171
页数:11
相关论文
共 29 条
[1]   PROGRESSIVE MYOCLONUS EPILEPSIES - SPECIFIC CAUSES AND DIAGNOSIS [J].
BERKOVIC, SF ;
ANDERMANN, F ;
CARPENTER, S ;
WOLFE, LS .
NEW ENGLAND JOURNAL OF MEDICINE, 1986, 315 (05) :296-305
[2]   Overexpression of protein targeting to glycogen (PTG) in rat hepatocytes causes profound activation of glycogen synthesis independent of normal hormone- and substrate-mediated regulatory mechanisms [J].
Berman, HK ;
O'Doherty, RM ;
Anderson, P ;
Newgard, CB .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (41) :26421-26425
[3]   The level of the glycogen targetting regulatory subunit R5 of protein phosphatase 1 is decreased in the livers of insulin-dependent diabetic rats and starved rats [J].
Browne, GJ ;
Delibegovic, M ;
Keppens, S ;
Stalmans, W ;
Cohen, PTW .
BIOCHEMICAL JOURNAL, 2001, 360 :449-459
[4]   Amino acid sequence of a novel protein phosphatase 1 binding protein (R5) which is related to the liver- and muscle-specific glycogen binding subunits of protein phosphatase 1 [J].
Doherty, MJ ;
Young, PR ;
Cohen, PTW .
FEBS LETTERS, 1996, 399 (03) :339-343
[5]   A TECHNIQUE FOR RADIOLABELING DNA RESTRICTION ENDONUCLEASE FRAGMENTS TO HIGH SPECIFIC ACTIVITY [J].
FEINBERG, AP ;
VOGELSTEIN, B .
ANALYTICAL BIOCHEMISTRY, 1983, 132 (01) :6-13
[6]   Identification of binding sites on protein targeting to glycogen for enzymes of glycogen metabolism [J].
Fong, NM ;
Jensen, TC ;
Shah, AS ;
Parekh, NN ;
Saltiel, AR ;
Brady, MJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (45) :35034-35039
[7]   Laforin, defective in the progressive myoclonus epilepsy of Lafora type, is a dual-specificity phosphatase associated with polyribosomes [J].
Ganesh, S ;
Agarwala, KL ;
Ueda, K ;
Akagi, T ;
Shoda, K ;
Usui, T ;
Hashikawa, T ;
Osada, H ;
Delgado-Escueta, AV ;
Yamakawa, K .
HUMAN MOLECULAR GENETICS, 2000, 9 (15) :2251-2261
[8]   Targeted disruption of the Epm2a gene causes formation of Lafora inclusion bodies, neurodegeneration, ataxia, myoclonus epilepsy and impaired behavioral response in mice [J].
Ganesh, S ;
Delgado-Escueta, AV ;
Sakamoto, T ;
Avila, MR ;
Machado-Salas, J ;
Hoshii, Y ;
Akagi, T ;
Gomi, H ;
Suzuki, T ;
Amano, K ;
Agarwala, KL ;
Hasegawa, Y ;
Bai, DS ;
Ishihara, T ;
Hashikawa, T ;
Itohara, S ;
Cornford, EM ;
Niki, H ;
Yamakawa, K .
HUMAN MOLECULAR GENETICS, 2002, 11 (11) :1251-1262
[9]   Mutation screening for Japanese Lafora's disease patients:: identification of novel sequence variants in the coding and upstream regulatory regions of EPM2A gene [J].
Ganesh, S ;
Shoda, K ;
Amano, K ;
Uchiyama, A ;
Kumada, S ;
Moriyama, N ;
Hirose, S ;
Yamakawa, K .
MOLECULAR AND CELLULAR PROBES, 2001, 15 (05) :281-289
[10]   Mutational spectrum of the EPM2A gene in progressive myoclonus epilepsy of Lafora:: high degree of allelic heterogeneity and prevalence of deletions [J].
Gómez-Garre, P ;
Sanz, Y ;
de Córdoba, SR ;
Serratosa, JM .
EUROPEAN JOURNAL OF HUMAN GENETICS, 2000, 8 (12) :946-954