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Human TPST1 transmembrane domain triggers enzyme dimerisation and localisation to the Golgi compartment
Authors:Goettsch Sandra  Badea Rodica A  Mueller Jonathan W  Wotzlaw Christoph  Schoelermann Beate  Schulz Lars  Rabiller Matthias  Bayer Peter  Hartmann-Fatu Cristina
Affiliation:Department of Structural and Medicinal Biochemistry, University of Duisburg-Essen and Centre for Medicinal Biotechnology, Universit?tsstr. 2-5, 45117 Essen, Germany.
Abstract:TPST1 is a human tyrosylprotein sulfotransferase that uses 3'phosphoadenosine-5'phosphosulfate (PAPS) to transfer the sulfate moiety to proteins predominantly designated for secretion. To achieve a general understanding of the cellular role of human tyrosine-directed sulfotransferases, we investigated targeting, structure and posttranslational modification of TPST1. Golgi localisation of the enzyme in COS-7 and HeLa cells was visualised by fluorescence imaging techniques. PNGase treatment and mutational studies determined that TPST1 bears N-linked glycosyl residues exclusively at position Asn60 and Asn262. By alanine mutation of these asparagine residues, we could determine that the N-linked oligosaccharides do not have an influence on Golgi retention of TPST1. In concert with N and C-terminal flanking residues, the transmembrane domain of TPST1 was determined to act in targeting and retention of the enzyme to the trans-Golgi compartment. This domain exhibits a pronounced secondary structure in a lipid environment. Further in vivo FRET studies using the transmembrane domain suggest that the human tyrosylprotein sulfotransferase may be functional as homodimer/oligomer in the trans-Golgi compartment.
Keywords:TPST, tyrosyl protein sulfotransferase   TMD, transmembrane domain   (E)GFP, (enhanced) green fluorescence protein   (E)CFP, (enhanced) cyan fluorescent protein   DsRed, Discosoma sp. red fluorescent protein   CD, circular dichroism   TFE, trifluoroethanol   nOG, n-octylglucoside   FRET, fluorescence resonance energy transfer   wt, wild-type
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