Bonar David, Hanisch Franz-Georg
From the Institute of Biochemistry II, Medical Faculty, University of Cologne, Joseph-Stelzmann-Strasse 52, 50931 Köln, Germany and.
From the Institute of Biochemistry II, Medical Faculty, University of Cologne, Joseph-Stelzmann-Strasse 52, 50931 Köln, Germany and Center for Molecular Medicine Cologne, University of Cologne, Robert-Koch-Strasse 21, 50931 Köln, Germany
J Biol Chem. 2014 Oct 24;289(43):29677-90. doi: 10.1074/jbc.M114.596049. Epub 2014 Sep 10.
The disaccharide N,N'-di-N-acetyllactose diamine (LacdiNAc, GalNAcβ1-4GlcNAcβ) is found in a limited number of extracellular matrix glycoproteins and neuropeptide hormones indicating a protein-specific transfer of GalNAc by the glycosyltransferases β4GalNAc-T3/T4. Whereas previous studies have revealed evidence for peptide determinants as controlling elements in LacdiNAc biosynthesis, we report here on an entirely independent conformational control of GalNAc transfer by single TFF (Trefoil factor) domains as high stringency determinants. Human TFF2 was recombinantly expressed in HEK-293 cells as a wild type full-length probe (TFF2-Fl, containing TFF domains P1 and P2), as single P1 or P2 domain probes, as a series of Cys/Gly mutant forms with aberrant domain structures, and as a double point-mutated probe (T68Q/F59Q) lacking aromatic residues within a hydrophobic patch. The N-glycosylation probes were analyzed by mass spectrometry for their glycoprofiles. In agreement with natural gastric TFF2, the recombinant full-length and single domain probes expressed nearly exclusively fucosylated LacdiNAc on bi-antennary complex-type chains indicating that a single TFF domain was sufficient to induce transfer of this modification. Contrasting to this, the Cys/Gly mutants showed strongly reduced LacdiNAc levels and instead preponderant LacNAc expression. The probe with point mutations of two highly conserved aromatic residues in loop 3 (T68Q/F59Q) revealed that these are essential determinant components, as the probe lacked LacdiNAc expression. The structural features of the LacdiNAc-inducing determinant on human TFF2 are discussed on the basis of crystal structures of porcine TFF2, and a series of extracellular matrix-related LacdiNAc-positive glycoproteins detected as novel candidate proteins in the secretome of HEK-293 cells.
二糖N,N'-二-N-乙酰乳糖二胺(LacdiNAc,GalNAcβ1-4GlcNAcβ)存在于数量有限的细胞外基质糖蛋白和神经肽激素中,这表明糖基转移酶β4GalNAc-T3/T4可进行蛋白质特异性的GalNAc转移。尽管先前的研究已经揭示了肽决定簇作为LacdiNAc生物合成控制元件的证据,但我们在此报告,单个三叶因子(TFF)结构域作为高严格性决定簇,对GalNAc转移具有完全独立的构象控制作用。人TFF2在HEK-293细胞中重组表达为野生型全长探针(TFF2-Fl,包含TFF结构域P1和P2)、单个P1或P2结构域探针、一系列具有异常结构域结构的Cys/Gly突变体形式以及一个在疏水区域内缺乏芳香族残基的双点突变探针(T68Q/F59Q)。通过质谱分析N-糖基化探针的糖谱。与天然胃TFF2一致,重组全长和单个结构域探针在双天线复合型链上几乎只表达岩藻糖基化的LacdiNAc,这表明单个TFF结构域足以诱导这种修饰的转移。与此形成对比的是,Cys/Gly突变体显示LacdiNAc水平大幅降低,取而代之的是LacNAc的优势表达。在环3中具有两个高度保守芳香族残基点突变的探针(T68Q/F59Q)表明,这些是关键的决定簇成分,因为该探针缺乏LacdiNAc表达。基于猪TFF2的晶体结构以及在HEK-293细胞分泌组中检测到的一系列细胞外基质相关的LacdiNAc阳性糖蛋白,对人TFF2上LacdiNAc诱导决定簇的结构特征进行了讨论。