نتایج جستجو برای: groel

تعداد نتایج: 1465  

پایان نامه :وزارت علوم، تحقیقات و فناوری - دانشگاه شیراز - دانشکده دامپزشکی 1391

استفاده از هدف های اسید نوکلئیک یک تکنیک جایگزین برای شناسایی دقیق گونه های استافیلوکوک تامین می کند. ژن groel توالی اسید نوکلئیکی حفاظت شده با میزان کافی تفاوت است که شناسایی در سطح گونه ای را امکان پذیر می سازد. ژن gap به عنوان یک ژن ساختمانی خانه ای است که یک پروتئین 42 کیلو دالتون موجود در دیواره سلولی را کد می کند. هدف این مطالعه مقایسه روش شناسایی فنوتیپی و ژنوتیپی در شناسایی گونه های است...

Journal: :Journal of molecular biology 1998
R Golbik R Zahn S E Harding A R Fersht

The apical domain of GroEL (residues 191 to 376) and its C-terminally truncated fragment GroEL(191-345) are expressed with high yield in Escherichia coli to give functional monomeric minichaperones. Owing to the reversible folding behaviour of the minichaperones we can analyse the folding of the polypeptide binding domain of the multidomain GroEL protein, the folding of which is known to be irr...

Journal: :Journal of structural biology 1998
R Stegmann E Manakova M Rössle H Heumann S E Nieba-Axmann A Plückthun T Hermann R P May A Wiedenmann

We applied neutron scattering in conjunction with deuterium (D-) labeling in order to obtain information about the domain structure of GroEL and GroES isolated and in the complex. Each subunit of the heptameric GroES consists of two domains, a core domain (Met1 to Lys15 and Lys34 to Ala97) and an intervening loop region (Glu16 to Ala33). Neutron scattering shows that both regions change their c...

Journal: :Annual review of biophysics and biomolecular structure 2001
D Thirumalai G H Lorimer

Molecular chaperones are required to assist folding of a subset of proteins in Escherichia coli. We describe a conceptual framework for understanding how the GroEL-GroES system assists misfolded proteins to reach their native states. The architecture of GroEL consists of double toroids stacked back-to-back. However, most of the fundamentals of the GroEL action can be described in terms of the s...

Journal: :Journal of molecular biology 2006
Martin Kawe Andreas Plückthun

While support in protein folding by molecular chaperones is extremely efficient for endogenous polypeptides, it often fails for recombinant proteins in a bacterial host, thus constituting a major hurdle for protein research and biotechnology. To understand the reasons for this difference and to answer the question of whether it is feasible to design tailor-made chaperones, we investigated one o...

Journal: :Journal of bacteriology 1992
M Li S L Wong

The sequence of the 10 N-terminal amino acids of a Bacillus subtilis protein that cross-reacts with antibody to Escherichia coli GroEL was used to design a set of degenerate oligonucleotide probes. These probes identified a clone which carries almost the entire groESL operon from a B. subtilis subgenomic library. By chromosomal walking, an additional fragment carrying the 3' end of groESL and i...

Journal: :The Journal of biological chemistry 1997
O Llorca J Pérez-Pérez J L Carrascosa A Galán A Muga J M Valpuesta

The chaperonin GroEL consists of a double-ring structure that assists protein folding in the presence of GroES and ATP. Recent studies suggest that the 7-mer ring is the functional unit where protein folding takes place. Nevertheless, both GroEL rings are required to complete the reaction cycle through signals transmitted between the two rings. Electron microscopy, image processing, and biochem...

Journal: :Cell 2001
Neil A. Ranson George W. Farr Alan M. Roseman Brent Gowen Wayne A. Fenton Arthur L. Horwich Helen R. Saibil

The chaperonin GroEL drives its protein-folding cycle by cooperatively binding ATP to one of its two rings, priming that ring to become folding-active upon GroES binding, while simultaneously discharging the previous folding chamber from the opposite ring. The GroEL-ATP structure, determined by cryo-EM and atomic structure fitting, shows that the intermediate domains rotate downward, switching ...

Journal: :Cell reports 2012
Giulia Calloni Taotao Chen Sonya M Schermann Hung-Chun Chang Pierre Genevaux Federico Agostini Gian Gaetano Tartaglia Manajit Hayer-Hartl F Ulrich Hartl

Cellular chaperone networks prevent potentially toxic protein aggregation and ensure proteome integrity. Here, we used Escherichia coli as a model to understand the organization of these networks, focusing on the cooperation of the DnaK system with the upstream chaperone Trigger factor (TF) and the downstream GroEL. Quantitative proteomics revealed that DnaK interacts with at least ~700 mostly ...

Journal: :Cell 1996
Jonathan S Weissman Hays S Rye Wayne A Fenton Joseph M Beechem Arthur L Horwich

Recent studies of GroE-mediated protein folding indicate that substrate proteins are productively released from a cis ternary complex in which the nonnative substrate is sequestered within the GroEL channel underneath GroES. Here, we examine whether protein folding can occur in this space. Stopped-flow fluorescence anisotropy of a pyrene-rhodanese-GroEl complex indicates that addition of GroES ...

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