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1 cture model of the peptide binding domain of Hsp70 family.
2 PA), and the up-regulation of members of the HSP70 family.
3 esentation by Ydj1p to the chaperones of the Hsp70 family.
4 Hsp110s, which are themselves members of the Hsp70 family.
5 e two genes distant members of the mammalian Hsp70 family.
6 ation and root growth for this member of the hsp70 family.
7 te, much like Kar2p and other members of the hsp70 family.
8 otic cells and is a diverged relative of the hsp70 family.
9 quired for two separate functions of a yeast Hsp70 family.
10 for this unique member of the membrane-bound Hsp70 family.
11 balance between chaperones of the Hsp100 and Hsp70 families.
12 ent, overexpression of SSA2, a member of the Hsp70 family and a prominent candidate for the feedback
13  is a significantly diverged subgroup of the hsp70 family and has been found in organisms as diverse
14 -associated proteins included members of the HSP70 family and various single-stranded DNA and RNA bin
15 constitutively bound to members of the Hsp40/Hsp70 family, and we found that heat shock-induced TDP-4
16 , a member of the 70 kDa heat shock protein (hsp70) family, and its complexes with substrate proteins
17 These results suggest that chaperones of the HSP70 family are required for nairovirus replication and
18 ass of cofactors of the eukaryotic chaperone Hsp70 family) are similar.
19                            Chaperones of the Hsp70 family bind to unfolded or partially folded polype
20 Here, we show that the Ssb1/2p member of the hsp70 family can form a stable, ATP-sensitive complex wi
21 trate that highly homologous variants in the Hsp70 family can have opposing effects on tau clearance
22               In agreement, GRP78, the major HSP70 family chaperone in the ER, is upregulated in Clcc
23                      The mechanisms by which Hsp70 family chaperones are regulated, however, are only
24                                        Other HSP70 family chaperones could not effectively replace mo
25                            Ssa1 and Ssa2 are Hsp70 family chaperones that generally cause pro-[PSI(+)
26  stimulate the protein refolding activity of Hsp70 family chaperones.
27 n recruiting and stimulating the activity of Hsp70 family chaperones.
28 for approximately 70-kDa heat shock protein (hsp70) family chaperones in regulating the quality and l
29 lar chaperones of the heat shock protein 70 (Hsp70) family counteract protein misfolding in a variety
30 ese three sequences and known members of the HSP70 family from plants, these cDNAs were identified as
31                               Members of the hsp70 family have been reported to be immunoreactive.
32 emonstrate that various members of the yeast Hsp70 family have diverged from each other in regard to
33  interactions in the complex may model other Hsp70 family heterodimers in which two Hsp70s reciprocal
34 h the completion of the genome sequence, the hsp70 family in Arabidopsis consists of 14 members unequ
35  fragment represented a second member of the HSP70 family in this organism.
36 proteins from the 70-kDa heat shock protein (HSP70) family in MCF7 cells.
37 undant variant of the heat shock protein 70 (Hsp70) family in the brain, heat shock cognate 70 protei
38 SP70B', a poorly characterized member of the HSP70 family, in response to oxidatively modified LDL (o
39 nserved nature of the heat shock protein 70 (Hsp70) family, in conjunction with mutant analysis, perm
40                The extreme C terminus of the Hsp70 family is required for substrate targeting and het
41 ly recognized property of the members of the Hsp70 family is their ability to interact with lipids, o
42 A-5 (hsp70), which we believe is part of the hsp70 family, is induced during bradyzoite development.
43 und that mortalin (HSPA9/GRP75), a member of HSP70 family, is upregulated in human MTC tissues and th
44 o at least two sites on the Escherichia coli Hsp70 family member DnaK: under the ATPase domain in a c
45 Cripto forms a cell surface complex with the HSP70 family member glucose-regulated protein-78 (GRP78)
46   We have studied the interaction of BiP, an Hsp70 family member in the lumen of the endoplasmic reti
47 clin that represses the transcription of the HSP70 family member SSA1.
48 also required for the full repression of the HSP70 family member SSA1.
49 h copurifies with Flag-Dcp1p as the abundant Hsp70 family member Ssa1p/2p.
50              We also discovered that HSPA1L (HSP70 family member) and BAG4 have mutually opposing rol
51 the interaction between the Escherichia coli Hsp70 family member, DnaK, and its cochaperone partner D
52  LXXLL motif that is required for binding of Hsp70 family members and cooperation with Hsp90 to regul
53      We compared C-terminal sequences of 730 Hsp70 family members and identified a novel conservation
54  found to catalyze trimethylation of various Hsp70 family members both in vitro and in vivo, and the
55 e expression of the inducible, antiapoptotic HSP70 family members HSPA1L and HSPA2, the latter of whi
56  enzyme, consistent with a proposed role for Hsp70 family members in tyrosinase post-translational mo
57 f BiP-assisted folding in the ER but also on Hsp70 family members that reside throughout the cell.
58                                              Hsp70 family members together with their Hsp40 cochapero
59                                     Like all Hsp70 family members, the ability of BiP to bind and rel
60 t are cell specific and discriminate between Hsp70 family members.
61 rotective proteins that bind to and regulate Hsp70 family molecular chaperones.
62                   Heat Shock Protein 70 kDa (Hsp70) family molecular chaperones play critical roles i
63                   As a characteristic of the Hsp70 family, multiple DnaJ-like co-factors can target s
64 ese genes, Hspa13 (Stch), is a member of the Hsp70 family of ATPase heat shock proteins, which have b
65                              Proteins of the Hsp70 family of ATPases interact with a conserved domain
66                              Proteins of the Hsp70 family of ATPases, such as BiP, function together
67 ain-binding protein (BiP) is a member of the hsp70 family of chaperones and one of the most abundant
68 , which lacks two cytoplasmic members of the hsp70 family of chaperones.
69                         Since members of the hsp70 family of eucaryotic proteins are associated with
70               In this regard, members of the Hsp70 family of heat shock proteins have been observed i
71                                          The Hsp70 family of molecular chaperones acts to prevent pro
72 endoplasmic reticulum (ER) orthologue of the Hsp70 family of molecular chaperones and is intricately
73 strate that the virus-specific member of the HSP70 family of molecular chaperones functions in interc
74                               Members of the hsp70 family of molecular chaperones interact with and s
75              Protein folding mediated by the Hsp70 family of molecular chaperones requires both ATP a
76 ively recognized and bound by members of the HSP70 family of molecular chaperones, but the binding si
77 rowing evidence that members of the extended Hsp70 family of molecular chaperones, including the Hsp1
78  well-characterized, essential member of the Hsp70 family of molecular chaperones, Kar2p.
79 iding in the ER lumen that is related to the hsp70 family of molecular chaperones.
80 073) that would encode a novel member of the Hsp70 family of molecular chaperones.
81 PDR gene family that encodes a member of the Hsp70 family of proteins found in this organism.
82 81-kD stromal polypeptide is a member of the Hsp70 family of stress-related proteins.
83 it interacts with the heat shock protein 70 (Hsp70) family of chaperone proteins.
84               The 70-kDa heat shock protein (Hsp70) family of chaperones bind cognate substrates to p
85 tile functions of the heat shock protein 70 (Hsp70) family of molecular chaperones rely on allosteric
86  antibodies to the 70-kD heat shock protein (HSP70) family of molecular chaperones.
87 up-regulated Hsps include two members of the Hsp70 family, one member of the Hsp60 family (TCP-1), at
88 roup and others suggests that members of the Hsp70 family play a significant role in Tau regulation.
89 , a member of the 70 kDa heat shock protein (HSP70) family, plays an important role in spermatogenesi
90 ers of the 70-kilodalton heat-shock protein (hsp70) family promote protein folding, interaction, and
91  levels of Hsp72, a heat-inducible member of Hsp70 family, protect cells against a variety of stresse
92 ], overproduction of the Ssa1 protein of the Hsp70 family protects [PSI] from the curing effect of Hs
93 ous overexpression of Ssa1, a protein of the Hsp70 family, protects [PSI] from curing by overexpressi
94 normal clam hemocytes) of human mortalin, an Hsp70 family protein.
95                                              Hsp70 family proteins are highly conserved chaperones in
96 NT-modified enolase, ATP5b, alpha-actin, and Hsp70 family proteins including Hspa5 and Hsp74.
97  the dominant stress-inducible member of the HSP70 family, rather than constitutively expressed HSC70
98 emonstrate that BiP (Kar2p), a member of the Hsp70 family resident in the ER lumen, acts as a molecul
99 e we demonstrate that another protein of the Hsp70 family, Ssb, previously implicated in nascent poly
100 ikely chaperone proteins: two members of the HSP70 family, three alpha B-crystallin-related small hea
101 ative CCHFV N and cellular chaperones of the HSP70 family was confirmed during live CCHFV infection.
102 e protein (Hsc70) as a representative of the Hsp70 family, we have characterized the effect of mutati
103  cytosolic chaperones Ssa1 and Ssb1/2 of the Hsp70 family were previously shown to exhibit "pro-[PSI(
104 ral cellular mRNAs, including members of the Hsp70 family whose export was inhibited under some, but

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