2iy9: Difference between revisions

From Proteopedia
Jump to navigationJump to search
OCA (talk | contribs)
New page: left|200px<br /><applet load="2iy9" size="350" color="white" frame="true" align="right" spinBox="true" caption="2iy9, resolution 1.80Å" /> '''CRYSTAL STRUCTURE OF...
 
OCA (talk | contribs)
No edit summary
Line 4: Line 4:


==Overview==
==Overview==
AB5 toxins are produced by pathogenic bacteria and consist of enzymatic A, subunits that corrupt essential eukaryotic cell functions, and pentameric, B subunits that mediate uptake into the target cell. AB5 toxins include, the Shiga, cholera and pertussis toxins and a recently discovered fourth, family, subtilase cytotoxin, which is produced by certain Shiga toxigenic, strains of Escherichia coli. Here we show that the extreme cytotoxicity of, this toxin for eukaryotic cells is due to a specific single-site cleavage, of the essential endoplasmic reticulum chaperone BiP/GRP78. The A subunit, is a subtilase-like serine protease; structural studies revealed an, unusually deep active-site cleft, which accounts for its exquisite, substrate specificity. A single amino-acid substitution in the BiP target, site prevented cleavage, and co-expression of this resistant protein, protected transfected cells against the toxin. BiP is a master regulator, of endoplasmic reticulum function, and its cleavage by subtilase cytotoxin, represents a previously unknown trigger for cell death.
AB5 toxins are produced by pathogenic bacteria and consist of enzymatic A subunits that corrupt essential eukaryotic cell functions, and pentameric B subunits that mediate uptake into the target cell. AB5 toxins include the Shiga, cholera and pertussis toxins and a recently discovered fourth family, subtilase cytotoxin, which is produced by certain Shiga toxigenic strains of Escherichia coli. Here we show that the extreme cytotoxicity of this toxin for eukaryotic cells is due to a specific single-site cleavage of the essential endoplasmic reticulum chaperone BiP/GRP78. The A subunit is a subtilase-like serine protease; structural studies revealed an unusually deep active-site cleft, which accounts for its exquisite substrate specificity. A single amino-acid substitution in the BiP target site prevented cleavage, and co-expression of this resistant protein protected transfected cells against the toxin. BiP is a master regulator of endoplasmic reticulum function, and its cleavage by subtilase cytotoxin represents a previously unknown trigger for cell death.


==About this Structure==
==About this Structure==
Line 14: Line 14:
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Beddoe, T.]]
[[Category: Beddoe, T.]]
[[Category: Paton, A.W.]]
[[Category: Paton, A W.]]
[[Category: Paton, J.C.]]
[[Category: Paton, J C.]]
[[Category: Rossjohn, J.]]
[[Category: Rossjohn, J.]]
[[Category: Talbot, U.M.]]
[[Category: Talbot, U M.]]
[[Category: Thorpe, C.M.]]
[[Category: Thorpe, C M.]]
[[Category: Whisstock, J.C.]]
[[Category: Whisstock, J C.]]
[[Category: Wilce, M.C.J.]]
[[Category: Wilce, M C.J.]]
[[Category: coli]]
[[Category: coli]]
[[Category: plasmid]]
[[Category: plasmid]]
Line 26: Line 26:
[[Category: toxin]]
[[Category: toxin]]


''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Wed Jan 23 14:43:01 2008''
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 17:57:17 2008''