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1-7 of 7
Keywords: sulfotransferase
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Articles
In Collection
Editors' pick of research highlights published in the Biochemical Journal in 2018 & 2019
Dominic P. Byrne, Yong Li, Pawin Ngamlert, Krithika Ramakrishnan, Claire E. Eyers, Carrow Wells, David H. Drewry, William J. Zuercher, Neil G. Berry, David G. Fernig, Patrick A. Eyers
Journal:
Biochemical Journal
Biochem J (2018) 475 (15): 2435–2455.
Published: 14 August 2018
...–protein interactions. Tyrosine sulfation is catalysed by two Golgi-resident enzymes termed tyrosylprotein sulfotransferases (TPSTs) 1 and 2, which transfer sulfate from the cofactor PAPS (3′-phosphoadenosine 5′-phosphosulfate) to a context-dependent tyrosine in a protein substrate. A lack of quantitative...
Includes: Supplementary data
Articles
Dominic P. Byrne, Yong Li, Krithika Ramakrishnan, Igor L. Barsukov, Edwin A. Yates, Claire E. Eyers, Dulcé Papy-Garcia, Sandrine Chantepie, Vijayakanth Pagadala, Jian Liu, Carrow Wells, David H. Drewry, William J. Zuercher, Neil G. Berry, David G. Fernig, Patrick A. Eyers
Journal:
Biochemical Journal
Biochem J (2018) 475 (15): 2417–2433.
Published: 14 August 2018
...-bound Golgi sulfotransferases, including HS 2- O -sulfotransferase (HS2ST), which transfers sulfate from the cofactor PAPS (3′-phosphoadenosine 5′-phosphosulfate) to the 2- O position of α- l -iduronate in the maturing polysaccharide chain. The current lack of simple non-radioactive enzyme assays...
Includes: Supplementary data
Articles
Journal:
Biochemical Journal
Biochem J (2012) 441 (2): 697–705.
Published: 21 December 2011
... structure with a non-reducing terminal 4-O-sulfation was the CS acceptor. In addition, C4ST-2 (chondroitin 4- O -sulfotransferase-2) efficiently transferred sulfate from 3′-phosphoadenosine 5′-phosphosulfate to position 4 of non-reducing terminal GalNAc-linkage residues, and the number of CS chains...
Articles
Journal:
Biochemical Journal
Biochem J (2011) 434 (2): 321–331.
Published: 11 February 2011
...Tomomi Izumikawa; Yuka Okuura; Toshiyasu Koike; Naoki Sakoda; Hiroshi Kitagawa Previously, we demonstrated that sog9 cells, a murine L cell mutant, are deficient in the expression of C4ST (chondroitin 4-O-sulfotransferase)-1 and that they synthesize fewer and shorter CS (chondroitin sulfate) chains...
Includes: Supplementary data
Articles
Shuji Mizumoto, Tadahisa Mikami, Daiki Yasunaga, Naoki Kobayashi, Hajime Yamauchi, Ayumi Miyake, Nobuyuki Itoh, Hiroshi Kitagawa, Kazuyuki Sugahara
Journal:
Biochemical Journal
Biochem J (2009) 419 (2): 387–399.
Published: 27 March 2009
... with characteristic sulfated structures. Here, we report the characterization of a zebrafish counterpart of C4ST-1 (chondroitin 4- O -sulfotransferase-1) and its functional importance in embryogenesis. Recombinant C4ST-1 showed a substrate preference for chondroitin and catalysed the 4-O-sulfation of GalNAc residues...
Articles
Journal:
Biochemical Journal
Biochem J (2008) 414 (2): 231–236.
Published: 12 August 2008
... therefore investigated whether SOX9 transduction of cultured human articular chondrocytes had any effect on the gene expression of the glycosyltransferases and sulfotransferases necessary for GAG biosynthesis. Retroviral SOX9 transduction of passaged chondrocytes increased the endogenous rate of GAG...
Articles
Journal:
Biochemical Journal
Biochem J (2007) 401 (2): 497–503.
Published: 21 December 2006
... cells labelled with [ 35 S]sulfate in the presence of nitrotyrosine. To identify the enzyme(s) responsible for nitrotyrosine sulfation, a systematic study of all eleven known human cytosolic SULTs (sulfotransferases) was performed. Of the 11 enzymes tested, only SULT1A3 displayed sulfating activity...