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Topology is the Principal Determinant in the Folding of a Complex All-alpha Greek Key Death Domain from Human FADD
Authors:Annette Steward  Jane Clarke
Institution:University of Cambridge Department of Chemistry, MRC Centre for Protein Engineering, Lensfield Road, Cambridge, CB2 1EW, UK
Abstract:In order to elucidate the relative importance of secondary structure and topology in determining folding mechanism, we have carried out a phi-value analysis of the death domain (DD) from human FADD. FADD DD is a 100 amino acid domain consisting of six anti-parallel alpha helices arranged in a Greek key structure. We asked how does the folding of this domain compare with that of (a) other all-alpha-helical proteins and (b) other Greek key proteins? Is the folding pathway determined mainly by secondary structure or is topology the principal determinant? Our Φ-value analysis reveals a striking resemblance to the all-beta Greek key immunoglobulin-like domains. Both fold via diffuse transition states and, importantly, long-range interactions between the four central elements of secondary structure are established in the transition state. The elements of secondary structure that are less tightly associated with the central core are less well packed in both cases. Topology appears to be the dominant factor in determining the pathway of folding in all Greek key domains.
Keywords:DD  death domain  FADD  Fas-associated death domain protein  FADD DD  FADD death domain  Ig  immunoglobulin  B1  bundle 1  B2  bundle 2  TNfn3  third fibronectin type III domain of human tenascin  an Ig-like domain  WT  wild type  TS  transition state  _method=retrieve&  _eid=1-s2  0-S0022283609004069&  _mathId=si1  gif&  _pii=S0022283609004069&  _issn=00222836&  _acct=C000069490&  _version=1&  _userid=6211566&  md5=b4c624a291fe49f7adfb9140dda73740')" style="cursor:pointer  mkf" target="_blank">" alt="Click to view the MathML source" title="Click to view the MathML source">mkf  denaturant dependence of the folding rate constant  _method=retrieve&  _eid=1-s2  0-S0022283609004069&  _mathId=si2  gif&  _pii=S0022283609004069&  _issn=00222836&  _acct=C000069490&  _version=1&  _userid=6211566&  md5=fc598693a855f016a712e669c7aafd07')" style="cursor:pointer  mku" target="_blank">" alt="Click to view the MathML source" title="Click to view the MathML source">mku  denaturant dependence of the unfolding rate constant
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