Folding with and without encapsulation by cis- and trans-only GroEL-GroES complexes

被引:57
作者
Farr, GW
Fenton, WA
Chaudhuri, TK
Clare, DK
Saibil, HR
Horwich, AL
机构
[1] Yale Univ, Sch Med, Boyer Ctr, Howard Hughes Med Inst, New Haven, CT 06510 USA
[2] Yale Univ, Sch Med, Boyer Ctr, Dept Genet, New Haven, CT 06510 USA
[3] Univ London Birkbeck Coll, Dept Crystallog, London WC1E 7HX, England
关键词
chaperonin; encapsulation; in vivo folding; protein folding;
D O I
10.1093/emboj/cdg313
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
Although a cis mechanism of GroEL-mediated protein folding, occurring inside a hydrophilic chamber encapsulated by the co-chaperonin GroES, has been well documented, recently the GroEL-GroES-mediated folding of aconitase, a large protein (82 kDa) that could not be encapsulated, was described. This process required GroES binding to the ring opposite the polypeptide (trans) to drive release and productive folding. Here, we have evaluated this mechanism further using trans-only complexes in which GroES is closely tethered to one of the two GroEL rings, blocking polypeptide binding by that ring. In vitro, trans-only folded aconitase with kinetics identical to GroEL-GroES. Surprisingly, trans-only also folded smaller GroEL-GroES-dependent substrates, Rubisco and malate dehydrogenase, but at rates slower than the cis reaction. Remarkably, in vivo, a plasmid encoding a trans-only complex rescued a GroEL-deficient strain, but the colony size was approximately one-tenth that produced by wild-type GroEL-GroES. We conclude that a trans mechanism, involving rounds of binding to an open ring and direct release into the bulk solution, can be generally productive although, where size permits, cis encapsulation supports more efficient folding.
引用
收藏
页码:3220 / 3230
页数:11
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