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'''27 February 2016:''' ''The sweet side of sulfur:'' [[Author]] '''[[User:Spencer Williams|Spencer Williams]]''' has updated the '''[[Glycoside Hydrolase Family 31]]''' page to reflect the recent discovery of the first dedicated sulfoquinovosidases (SQases), previously ‘hidden’ within this family. SQases cleave α-glycosides of sulfoquinovose (6-sulfoglucose), which represent a significant reservoir of organosulfur in the biosphere. ''See the [[GH31]] page to discover more of the hidden charms of this family.''
 
'''27 February 2016:''' ''The sweet side of sulfur:'' [[Author]] '''[[User:Spencer Williams|Spencer Williams]]''' has updated the '''[[Glycoside Hydrolase Family 31]]''' page to reflect the recent discovery of the first dedicated sulfoquinovosidases (SQases), previously ‘hidden’ within this family. SQases cleave α-glycosides of sulfoquinovose (6-sulfoglucose), which represent a significant reservoir of organosulfur in the biosphere. ''See the [[GH31]] page to discover more of the hidden charms of this family.''
 
 
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'''11 September 2015:''' ''Let's hear it for the [[transglycosylases]]!:''  Today, [[Author]]s '''[[User:Ramon Hurtado-Guerrero|Ramon Hurtado-Guerrero]]''' and '''[[User:Thierry Fontaine|Thierry Fontaine]]''', together with [[Responsible Curator]]  '''[[User:Bernard Henrissat|Bernard Henrissat]]''', completed the '''[[Glycoside Hydrolase Family 72]]''' page.  '''[[GH72]]''' is a small but important family of beta(1-3)-glucan [[transglycosylases]] that function to remodel the cell wall during the growth of yeast and other fungi.  Predominant or strict transglycosylases are relatively rare in GH families, with other notable examples coming from [[GH13]], [[GH16]], [[GH31]], [[GH70]], and [[GH77]]. ''Read more about '''[[GH72]]''' and what makes [[transglycosylases]] so interesting here in CAZypedia!''
 
'''11 September 2015:''' ''Let's hear it for the [[transglycosylases]]!:''  Today, [[Author]]s '''[[User:Ramon Hurtado-Guerrero|Ramon Hurtado-Guerrero]]''' and '''[[User:Thierry Fontaine|Thierry Fontaine]]''', together with [[Responsible Curator]]  '''[[User:Bernard Henrissat|Bernard Henrissat]]''', completed the '''[[Glycoside Hydrolase Family 72]]''' page.  '''[[GH72]]''' is a small but important family of beta(1-3)-glucan [[transglycosylases]] that function to remodel the cell wall during the growth of yeast and other fungi.  Predominant or strict transglycosylases are relatively rare in GH families, with other notable examples coming from [[GH13]], [[GH16]], [[GH31]], [[GH70]], and [[GH77]]. ''Read more about '''[[GH72]]''' and what makes [[transglycosylases]] so interesting here in CAZypedia!''
 
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'''6 August 2015:'''  ''Live from the Cellulase/CAZyme GRC:''  ''CAZypedia'' marches on with the completion of the '''[[Polysaccharide Lyase Family 1]]''' today by [[Responsible Curator]] and [[Author]] '''[[User:Richard Pickersgill|Richard Pickersgill]]''', with additional editing by [[Polysaccharide Lyase Families]] coordinator '''[[User:Wade Abbott|Wade Abbott]]'''.  '''[[PL1]]''' contains pectate lyases from microbes and plants, which are key enzymes in plant cell wall remodelling/break-down.  The solution of the crystal structure of a pectate lyase C from the plant pathogen ''Erwinia chrysanthemi'' was the first to reveal the parallel beta-helix as a novel protein fold that is now known to serve as the scaffold of other pectinolytic enzymes, including pectin hydrolases ([[GH28]]) and pectin methylesterases ([http://www.cazy.org/CE8.html CE8]).  ''Read more about the discovery of pectate lyases and the enzymology and crystallography of [[PL1]] [[PL1|here]].''
 
'''6 August 2015:'''  ''Live from the Cellulase/CAZyme GRC:''  ''CAZypedia'' marches on with the completion of the '''[[Polysaccharide Lyase Family 1]]''' today by [[Responsible Curator]] and [[Author]] '''[[User:Richard Pickersgill|Richard Pickersgill]]''', with additional editing by [[Polysaccharide Lyase Families]] coordinator '''[[User:Wade Abbott|Wade Abbott]]'''.  '''[[PL1]]''' contains pectate lyases from microbes and plants, which are key enzymes in plant cell wall remodelling/break-down.  The solution of the crystal structure of a pectate lyase C from the plant pathogen ''Erwinia chrysanthemi'' was the first to reveal the parallel beta-helix as a novel protein fold that is now known to serve as the scaffold of other pectinolytic enzymes, including pectin hydrolases ([[GH28]]) and pectin methylesterases ([http://www.cazy.org/CE8.html CE8]).  ''Read more about the discovery of pectate lyases and the enzymology and crystallography of [[PL1]] [[PL1|here]].''
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'''28 July 2015:'''  '''''100 GH FAMILIES!!!'''''  We are extremely pleased to announce that ''CAZypedia'' has reached the key milestone of 100 [[Curator Approved]] [[Glycoside Hydrolase Families|Glycoside Hydrolase Family]] pages today, thanks to the completion of the '''[[Glycoside Hydrolase Family 12]]''' page by '''[[User:Gerlind Sulzenbacher|Gerlind Sulzenbacher]]'''.  '''[[GH12]]''' is one of the classic "cellulase" families ([http://www.ncbi.nlm.nih.gov/pubmed/1886523?dopt=Abstract formerly known as cellulase family H]) defined early in the history of the CAZy classification; [[GH12]] is now known to comprise both microbial endo-glucanases and endo-xyloglucanases.  The completion of this page is especially timely in advance of the upcoming [http://www.grc.org/programs.aspx?id=12846 2015 GRC on Cellulosomes, Cellulases & Other Carbohydrate Modifying Enzymes], happening next week. [[User:Gerlind Sulzenbacher|Gerlind]] performed the seminal crystallography in this family (under the mentorship of [[User:Gideon Davies|Gideon Davies]]), and we would especially like to thank her for producing an excellent summary and series of figures for the "[[Glycoside_Hydrolase_Family_12#Three-dimensional_structures|Three-dimensional structures]]" section.
 
 
 
''The [[Board of Curators]] would also like to take the opportunity of this key milestone to express our sincere gratitude to our many expert [[:Category:Contributors|Contributors]] for their time and dedication to building ''CAZypedia'' as a community-based resource [[:CAZypedia:History|over the past 8 years]]. In addition to the [[Glycoside Hydrolase Families|100 Curator Approved GH pages]], ''CAZypedia'' also currently contains [[Polysaccharide_Lyase_Families|5 PL Family pages]], [[Auxiliary Activity Families|2 AA Family pages]], [[Glycosyltransferase Families|2 GT Family pages]], [[Carbohydrate Binding Module Families|10 CBM Family pages]], and [[Lexicon|22 Lexicon pages]]!''
 
 
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Revision as of 11:31, 27 February 2016

27 February 2016: The sweet side of sulfur: Author Spencer Williams has updated the Glycoside Hydrolase Family 31 page to reflect the recent discovery of the first dedicated sulfoquinovosidases (SQases), previously ‘hidden’ within this family. SQases cleave α-glycosides of sulfoquinovose (6-sulfoglucose), which represent a significant reservoir of organosulfur in the biosphere. See the GH31 page to discover more of the hidden charms of this family.


11 September 2015: Let's hear it for the transglycosylases!: Today, Authors Ramon Hurtado-Guerrero and Thierry Fontaine, together with Responsible Curator Bernard Henrissat, completed the Glycoside Hydrolase Family 72 page. GH72 is a small but important family of beta(1-3)-glucan transglycosylases that function to remodel the cell wall during the growth of yeast and other fungi. Predominant or strict transglycosylases are relatively rare in GH families, with other notable examples coming from GH13, GH16, GH31, GH70, and GH77. Read more about GH72 and what makes transglycosylases so interesting here in CAZypedia!


6 August 2015: Live from the Cellulase/CAZyme GRC: CAZypedia marches on with the completion of the Polysaccharide Lyase Family 1 today by Responsible Curator and Author Richard Pickersgill, with additional editing by Polysaccharide Lyase Families coordinator Wade Abbott. PL1 contains pectate lyases from microbes and plants, which are key enzymes in plant cell wall remodelling/break-down. The solution of the crystal structure of a pectate lyase C from the plant pathogen Erwinia chrysanthemi was the first to reveal the parallel beta-helix as a novel protein fold that is now known to serve as the scaffold of other pectinolytic enzymes, including pectin hydrolases (GH28) and pectin methylesterases (CE8). Read more about the discovery of pectate lyases and the enzymology and crystallography of PL1 here.