Protein Domain : IPR001844

Type:  Family Name:  Chaperonin Cpn60
Description:  The assembly of proteins has been thought to be the sole result of properties inherent in the primary sequence of polypeptides themselves. In some cases, however, structural information from other protein molecules is required for correct folding and subsequent assembly into oligomers []. These `helper' molecules are referred to as molecular chaperones, a subfamily of which are the chaperonins []. They are required for normal cell growth (as demonstrated by the fact that no temperature sensitive mutants for the chaperonin genes can be found in the temperature range 20 to 43 degrees centigrade []), and are stress-induced, acting to stabilise or protect disassembled polypeptides under heat-shock conditions []. Type I chaperonins present in eubacteria, mitochondria and chloroplasts require the concerted action of 2 proteins, chaperonin 60 (cpn60) and chaperonin 10 (cpn10). Type II chaperonins, found in eukaryotic cytosol and in Archaebacteria, comprise only a cpn60 member.The 10 kDa chaperonin (cpn10 - or groES in bacteria) exists as a ring-shaped oligomer of between 6 to 8 identical subunits, whereas the 60 kDa chaperonin (cpn60 - or groEL in bacteria) forms a structure comprising 2 stacked rings, each ring containing 7 identical subunits []. These ring structures assemble by self-stimulation in the presence of Mg2+-ATP. The central cavity of the cylindrical cpn60 tetradecamer provides as isolated environment for protein folding whilst cpn-10 binds to cpn-60 and synchronizes the release of the folded protein in an Mg2+-ATP dependent manner [, ]. The binding of cpn10 to cpn60 inhibits the weak ATPase activity of cpn60.The 60 kDa form of chaperonin is the immunodominant antigen of patients with Legionnaire's disease [], and is thought to play a role in the protection of the Legionella spp. bacteria from oxygen radicals within macrophages. This hypothesis is based on the finding that the cpn60 gene is upregulated in response to hydrogen peroxide, a source of oxygen radicals. Cpn60 has also been found to display strong antigenicity in many bacterial species [], and has the potential for inducing immune protection against unrelated bacterial infections. The RuBisCO subunit binding protein (which has been implicated in the assembly of RuBisCO) and cpn60 have been found to be evolutionary homologues, the RuBisCO subunit binding protein having the C-terminal Gly-Gly-Met repeat found in all bacterial cpn60 sequences. Although the precise function of this repeat is unknown, it is thought to be important as it is also found in 70 kDa heat-shock proteins []. The crystal structure of Escherichia coliGroEL has been resolved to 2.8A []. Short Name:  Chaprnin_Cpn60

0 Child Features

1 Contains

DB identifier Type Name
IPR018370 Conserved_site Chaperonin Cpn60, conserved site

3 Cross Referencess

Identifier
PR00298
TIGR02348
MF_00600

0 Found In

2 GO Annotations

GO Term Gene Name
GO:0042026 IPR001844
GO:0005737 IPR001844

2 Ontology Annotations

GO Term Gene Name
GO:0042026 IPR001844
GO:0005737 IPR001844

1 Parent Features

DB identifier Type Name
IPR002423 Family Chaperonin Cpn60/TCP-1 family

3256 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
171093 D8RFT3 PAC:15405948 Selaginella moellendorffii 526  
99807 D8RRA0 PAC:15419511 Selaginella moellendorffii 546  
442408 D8RT66 PAC:15410765 Selaginella moellendorffii 556  
405358 D8QX32 PAC:15412394 Selaginella moellendorffii 507  
80665 D8QXT8 PAC:15406873 Selaginella moellendorffii 525  
167342 D8R2L9 PAC:15418516 Selaginella moellendorffii 544  
168153 D8R5U7 PAC:15419933 Selaginella moellendorffii 550  
85251 D8R6P6 PAC:15418470 Selaginella moellendorffii 557  
229930 D8QMT6 PAC:15414528 Selaginella moellendorffii 554  
158120 D8STH9 PAC:15412694 Selaginella moellendorffii 534  
183479 D8SX58 PAC:15421964 Selaginella moellendorffii 594  
158694 D8SVG4 PAC:15416644 Selaginella moellendorffii 536  
74977 D8QQT7 PAC:15413862 Selaginella moellendorffii 548  
165043 D8QSF2 PAC:15410433 Selaginella moellendorffii 607  
evm.model.supercontig_103.86 PAC:16404975 Carica papaya 563  
evm.model.supercontig_161.12 PAC:16410180 Carica papaya 604  
evm.model.supercontig_179.12 PAC:16411185 Carica papaya 498  
evm.model.supercontig_26.235 PAC:16415178 Carica papaya 527  
evm.model.supercontig_30.160 PAC:16416956 Carica papaya 570  
evm.model.supercontig_477.1 PAC:16420723 Carica papaya 546  
evm.model.supercontig_53.5 PAC:16422274 Carica papaya 570  
evm.model.supercontig_59.67 PAC:16423207 Carica papaya 452  
evm.model.supercontig_65.23 PAC:16424430 Carica papaya 585  
evm.model.supercontig_8.201 PAC:16426488 Carica papaya 574  
evm.model.supercontig_9.270 PAC:16428169 Carica papaya 111  
evm.model.supercontig_999.3 PAC:16429335 Carica papaya 534  
29904.m003020 B9RWQ2 PAC:16812664 Ricinus communis 574  
29929.m004774 B9RMR9 PAC:16814013 Ricinus communis 535  
30051.m000523 B9SF60 PAC:16816109 Ricinus communis 546  
30110.m000716 B9S339 PAC:16817840 Ricinus communis 533  

6 Publications

First Author Title Year Journal Volume Pages PubMed ID
            1347461
            1672279
            1350777
            2897629
            7935790
            1349837