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biogenesis and quality control of misfolded cystic fibrosis transmembrane conductance regula-
tor at multiple levels. J Biol Chem 287:19158-19170
Schmidt S, Strub A, Rottgers K, Zufall N, Voos W (2001) The two mitochondrial heat shock pro-
teins 70, Ssc1 and Ssq1, compete for the cochaperone Mge1. J Mol Biol 313:13-26
Schneider HC, Westermann B, Neupert W, Brunner M (1996) The nucleotide exchange factor
MGE exerts a key function in the ATP-dependent cycle of mt-Hsp70-Tim44 interaction driving
mitochondrial protein import. EMBO J 15:5796-5803
Schuermann JP, Jiang J, Cuellar J, Llorca O, Wang L, Gimenez LE, Jin S, Taylor AB, Demeler B,
Morano KA, Hart PJ, Valpuesta JM, Lafer EM, Sousa R (2008) Structure of the Hsp110:Hsc70
nucleotide exchange machine. Mol Cell 31:232-243
Senderek J, Krieger M, Stendel C, Bergmann C, Moser M, Breitbach-Faller N, Rudnik-Schoneborn
S, Blaschek A, Wolf NI, Harting I, North K, Smith J, Muntoni F, Brockington M, Quijano-Roy
S, Renault F, Herrmann R, Hendershot LM, Schroder JM, Lochmuller H, Topaloglu H, Voit T,
Weis J, Ebinger F, Zerres K (2005) Mutations in SIL1 cause Marinesco-Sjogren syndrome, a
cerebellar ataxia with cataract and myopathy. Nat Genet 37:1312-1314
Shaner L, Trott A, Goeckeler JL, Brodsky JL, Morano KA (2004) The function of the yeast mo-
lecular chaperone Sse1 is mechanistically distinct from the closely related hsp70 family. J Biol
Chem 279:21992-22001
Shaner L, Wegele H, Buchner J, Morano KA (2005) The yeast HSP110 SSE1 functionally interacts
with the HSP70 chaperones SSA and SSB. J Biol Chem 279:21992-22001
Shaner L, Sousa R, Morano KA (2006) Characterization of Hsp70 binding and nucleotide ex-
change by the yeast Hsp110 chaperone Sse1. BioChemistry 45:15075-15084
Shaner L, Gibney PA, Morano KA (2008) The Hsp110 protein chaperone Sse1 is required for yeast
cell wall integrity and morphogenesis. Curr Genet 54:1-11
Shi LX, Theg SM (2010) A stromal heat shock protein 70 system functions in protein import into
chloroplasts in the moss Physcomitrella patens. Plant Cell 22:205-220
Shomura Y, Dragovic Z, Chang HC, Tzvetkov N, Young JC, Brodsky JL, Guerriero V, Hartl FU,
Bracher A (2005) Regulation of Hsp70 function by HspBP1: Structural analysis reveals an
alternate mechanism for Hsp70 nucleotide exchange. Mol Cell 17:367-379
Shorter J (2011) The mammalian disaggregase machinery: Hsp110 synergizes with Hsp70 and
Hsp40 to catalyze protein disaggregation and reactivation in a cell-free system. PLoS One
6:e26319
Sondermann H, Scheufler C, Schneider C, H￶hfeld J, Hartl FU, Moarefi I (2001) Structure of a
Bag/Hsc70 complex: convergent functional evolution of Hsp70 nucleotide exchange factors.
Science 291:1553-1557
Sondermann H, Ho AK, Listenberger LL, Siegers K, Moarefi I, Wente SR, Hartl FU, Young JC
(2002) Prediction of novel Bag-1 homologs based on structure/function analysis identifies
Snl1p as an Hsp70 co-chaperone in Saccharomyces cerevisiae. J Biol Chem 277:33220-33227
Song J, Takeda M, Morimoto RI (2001) Bag1-Hsp70 mediates a physiological stress signalling
pathway that regulates Raf-1/ERK and cell growth. Nat Cell Biol 3:276-282
Steel GJ, Fullerton DM, Tyson JR, Stirling CJ (2004) Coordinated activation of Hsp70 chaperones.
Science 303:98-101
Storozhenko S, De Pauw P, Kushnir S, Van Montagu M, Inze D (1996) Identification of an Ara-
bidopsis thaliana cDNA encoding a HSP70-related protein belonging to the HSP110/SSE1
subfamily. FEBS Lett 390:113-118
Swain JF, Dinler G, Sivendran R, Montgomery DL, Stotz M, Gierasch LM (2007) Hsp70 chaper-
one ligands control domain association via an allosteric mechanism mediated by the interdo-
main linker. Mol Cell 26:27-39
Symersky J, Zhang Y, Schormann N, Li S, Bunzel R, Pruett P, Luan CH, Luo M (2004) Structural
genomics of Caenorhabditis elegans: structure of the BAG domain. Acta Crystallogr D Biol
Crystallogr 60:1606-1610
Takayama S, Reed JC (2001) Molecular chaperone targeting and regulation by BAG family pro-
teins. Nat Cell Biol 3:E237-E241
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