Activity of fucosyltransferases and altered glycosylation in cystic fibrosis airway epithelial cells

被引:50
作者
Glick, MC [1 ]
Kothari, VA [1 ]
Liu, AH [1 ]
Stoykova, LI [1 ]
Scanlin, TF [1 ]
机构
[1] Univ Penn, Childrens Hosp Philadelphia, Sch Med, Dept Pediat,Cyst Fibrosis Ctr, Philadelphia, PA 19104 USA
关键词
alpha 1,3 fucosylation; alpha 1,2 fucosylation; fucosyltransferases; CF airway epithelial cells; CFTR; Golgi;
D O I
10.1016/S0300-9084(01)01323-2
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cystic fibrosis (CF) glycoconjugates have a glycosylation phenotype of increased fucosylation and/or decreased sialylation when compared with non-CF. A major increase in fucosyl residues linked alpha1,3 to antennary GlcNAc was observed when surface membrane glycoproteins of CF airway epithelial cells were compared to those of non-CF airway cells. Importantly, the increase in the fucosyl residues was reversed with transfection of CF cells with wild type CFTR cDNA under conditions which brought about a functional correction of the Cl- channel defect in the CF cells. In contrast, examination of fucosyl residues in alpha1,2 linkage by a specific alpha1,2 fucosidase showed that cell surface glycoproteins of the non-CF cells had a higher percentage of fucose in alpha1,2 linkage than the CF cells. Airway epithelial cells in primary culture had a similar reciprocal relationship of alpha1,2- and alpha1,3-fucosylation when CF and non-CF surface membrane glycoconjugates were compared. In striking contrast, the enzyme activity and the mRNA of alpha1,2 fucosyltransferase did not reflect the difference in glycoconjugates observed between the CF and non-CF cells. We hypothesize that mutated CFTR may cause faulty compartmentalization in the Golgi so that the nascent glycoproteins encounter alpha1,3FucT before either the sialyl- or alpha1,2 fucosyltransferases. In subsequent compartments, little or no terminal glycosylation can take place since the sialyl- or alpha1,2 fucosyltransferases are unable to utilize a substrate, which is facosylated in alpha1,3 position on antennary GlcNAc. This hypothesis, if proven correct, could account for the CF glycophenotype. (C) 2001 Societe francaise de biochimie et biologie moleculaire/Editions scientifiques et medicales Elsevier SAS. All rights reserved.
引用
收藏
页码:743 / 747
页数:5
相关论文
共 50 条
[31]   Improvement of defective cystic fibrosis airway epithelial wound repair after CFTR rescue [J].
Nguyen Thu Ngan Trinh ;
Bardou, Olivier ;
Prive, Anik ;
Maille, Emilie ;
Adam, Damien ;
Lingee, Sarah ;
Ferraro, Pasquale ;
Desrosiers, Martin-Yvon ;
Coraux, Christelle ;
Brochiero, Emmanuelle .
EUROPEAN RESPIRATORY JOURNAL, 2012, 40 (06) :1390-1400
[32]   Effect of of CFTR modifiers on arylsulfatase B activity in cystic fibrosis and normal human bronchial epithelial cells [J].
Bhattacharyya, Sumit ;
Feferman, Leo ;
Tobacman, Joanne K. .
PULMONARY PHARMACOLOGY & THERAPEUTICS, 2016, 36 :22-30
[33]   Airway inflammation in mild cystic fibrosis [J].
Eckrich, Jonas ;
Zissler, Ulrich M. ;
Serve, Friederike ;
Leutz, Patricia ;
Smaczny, Christina ;
Schmitt-Grohe, Sabina ;
Fussbroich, Daniela ;
Schubert, Ralf ;
Zielen, Stefan ;
Eickmeier, Olaf .
JOURNAL OF CYSTIC FIBROSIS, 2017, 16 (01) :107-115
[34]   Unified Airway-Cystic Fibrosis [J].
Cho, Do-Yeon ;
Grayson, Jessica W. ;
Woodworth, Bradford A. .
OTOLARYNGOLOGIC CLINICS OF NORTH AMERICA, 2023, 56 (01) :125-136
[35]   Non-viral mediated gene therapy in human cystic fibrosis airway epithelial cells recovers chloride channel functionality [J].
Sainz-Ramos, Myriam ;
Villate-Beitia, Ilia ;
Gallego, Idoia ;
Qtaish, Nuseibah A. L. ;
Lopez-Mendez, Tania B. ;
Eritja, Ramon ;
Grijalvo, Santiago ;
Puras, Gustavo ;
Luis Pedraz, Jose .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2020, 588
[36]   c-Cbl Facilitates Endocytosis and Lysosomal Degradation of Cystic Fibrosis Transmembrane Conductance Regulator in Human Airway Epithelial Cells [J].
Ye, Siying ;
Cihil, Kristine ;
Stolz, Donna Beer ;
Pilewski, Joseph M. ;
Stanton, Bruce A. ;
Swiatecka-Urban, Agnieszka .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (35) :27008-27018
[37]   Effect of Polarized Release of CXC-Chemokines from Wild-Type and Cystic Fibrosis Murine Airway Epithelial Cells [J].
Farberman, Michelle M. ;
Ibricevic, Aida ;
Joseph, Theresa D. ;
Akers, Kathryn T. ;
Garcia-Medina, Raquel ;
Crosby, Seth ;
Clarke, Lane L. ;
Brody, Steven L. ;
Ferkol, Thomas W. .
AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 2011, 45 (02) :221-228
[38]   Pharmacological Rescue of Conditionally Reprogrammed Cystic Fibrosis Bronchial Epithelial Cells [J].
Gentzsch, Martina ;
Boyles, Susan E. ;
Cheluvaraju, Chaitra ;
Chaudhry, Imron G. ;
Quinney, Nancy L. ;
Cho, Crescentia ;
Dang, Hong ;
Liu, Xuefeng ;
Schlegel, Richard ;
Randell, Scott H. .
AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 2017, 56 (05) :568-574
[39]   Cystic Fibrosis Bronchial Epithelial Cells Are Lipointoxicated by Membrane Palmitate Accumulation [J].
Payet, Laurie-Anne ;
Kadri, Linette ;
Giraud, Sebastien ;
Norez, Caroline ;
Berjeaud, Jean Marc ;
Jayle, Christophe ;
Mirval, Sandra ;
Becq, Frederic ;
Vandebrouck, Clarisse ;
Ferreira, Thierry .
PLOS ONE, 2014, 9 (02)
[40]   The impact of hypoxia on the ion channels in cystic fibrosis bronchial epithelial cells [J].
Pascarel, K. ;
Colas, J. ;
Mirval, S. ;
Becq, F. ;
Vandebrouck, C. .
REVUE DES MALADIES RESPIRATOIRES, 2023, 40 (03) :230-233