Sialic Acids Attached to O-Glycans Modulate Voltage-gated Potassium Channel Gating

被引:43
作者
Schwetz, Tara A. [1 ]
Norring, Sarah A. [1 ]
Ednie, Andrew R. [1 ]
Bennett, Eric S. [1 ,2 ,3 ]
机构
[1] Univ S Florida, Coll Med, Dept Mol Pharmacol & Physiol, Tampa, FL 33612 USA
[2] Univ S Florida, Coll Med, Program Neurosci, Tampa, FL 33612 USA
[3] Univ S Florida, Coll Med, Program Cardiovasc Sci, Tampa, FL 33612 USA
关键词
CHAGAS HEART-DISEASE; U-TYPE INACTIVATION; SODIUM-CHANNEL; K+ CHANNELS; LINKED GLYCOSYLATION; CONGENITAL DISORDERS; N-GLYCOSYLATION; NA+ CHANNEL; MUCIN-TYPE; VENTRICULAR MYOCYTES;
D O I
10.1074/jbc.M110.171322
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
Neuronal, cardiac, and skeletal muscle action potentials are produced and conducted through the highly regulated activity of several types of voltage-gated ion channels. Voltage-gated potassium (K-v) channels are responsible for action potential repolarization. Glycans can be attached to glycoproteins through N-and O-linkages. Previous reports described the impact of N-glycans on voltage-gated ion channel function. Here, we show that sialic acids attached through O-linkages modulate gating of K(v)2.1, K(v)4.2, and K(v)4.3. The conductance-voltage (G-V) relationships for each isoform were shifted uniquely by a depolarizing 8-16 mV under conditions of reduced sialylation. The data indicate that sialic acids modulate K-v channel activation through apparent electrostatic mechanisms that promote channel activity. Voltage-dependent steady-state inactivation was unaffected by changes in sialylation. N-Linked sialic acids cannot be responsible for the G-V shifts because K(v)4.2 and K(v)4.3 cannot be N-glycosylated, and immunoblot analysis confirmed K(v)2.1 is not N-glycosylated. Glycosidase gel shift analysis suggested that K(v)2.1, K(v)4.2, and K(v)4.3 were O-glycosylated and sialylated. To confirm this, azide-modified sugar residues involved specifically in O-glycan and sialic acid biosynthesis were shown to incorporate into all three K-v channel isoforms using Cu(I)-catalyzed cycloaddition chemistry. Together, the data indicate that sialic acids attached to O-glycans uniquely modulate gating of three K-v channel isoforms that are not N-glycosylated. These data provide the first evidence that external O-glycans, with core structures distinct from N-glycans in type and number of sugar residues, can modulate K-v channel function and thereby contribute to changes in electrical signaling that result from regulated ion channel expression and/or O-glycosylation.
引用
收藏
页码:4123 / 4132
页数:10
相关论文
共 66 条
[1]   Novel arrhythmogenic mechanism revealed by a Long-QT syndrome mutation in the cardiac Na+ channel [J].
Abriel, H ;
Cabo, C ;
Wehrens, XHT ;
Rivolta, I ;
Motoike, HK ;
Memmi, M ;
Napolitano, C ;
Priori, SG ;
Kass, RS .
CIRCULATION RESEARCH, 2001, 88 (07) :740-745
[2]   Contribution of sialic acid to the voltage dependence of sodium channel gating - A possible electrostatic mechanism [J].
Bennett, E ;
Urcan, MS ;
Tinkle, SS ;
Koszowski, AG ;
Levinson, SR .
JOURNAL OF GENERAL PHYSIOLOGY, 1997, 109 (03) :327-343
[3]   Isoform-specific effects of sialic acid on voltage-dependent Na+ channel gating:: functional sialic acids are localized to the S5-S6 loop of domain I [J].
Bennett, ES .
JOURNAL OF PHYSIOLOGY-LONDON, 2002, 538 (03) :675-690
[4]   Kv2.1 and silent Kv subunits underlie the delayed rectifier K+ current in cultured small mouse DRG neurons [J].
Bocksteins, Elke ;
Raes, Adam L. ;
Van de Vijver, Gerda ;
Bruyns, Tine ;
Van Bogaert, Pierre-Paul ;
Snyders, Dirk J. .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2009, 296 (06) :C1271-C1278
[5]   Weekly electrocardiographic pattern in mice infected with two different Trypanosoma cruzi strains [J].
Bustamante, JM ;
Rivarola, HW ;
Fretes, R ;
Paglini-Oliva, PA .
INTERNATIONAL JOURNAL OF CARDIOLOGY, 2005, 102 (02) :211-217
[6]   Occurrence and properties of the hyperpolarization-activated current if in ventricular myocytes from normotensive and hypertensive rats during aging [J].
Cerbai, E ;
Barbieri, M ;
Mugelli, A .
CIRCULATION, 1996, 94 (07) :1674-1681
[7]   Inherited and acquired vulnerability to ventricular arrhythmias:: Cardiac Na+ and K+ channels [J].
Clancy, CE ;
Kass, RS .
PHYSIOLOGICAL REVIEWS, 2005, 85 (01) :33-47
[8]  
Colbert CM, 1999, J NEUROSCI, V19, P8163
[9]   SUMOylation regulates Kv2.1 and modulates pancreatic β-cell excitability [J].
Dai, Xiao-Qing ;
Kolic, Jelena ;
Marchi, Paolo ;
Sipione, Simonetta ;
MacDonald, Patrick E. .
JOURNAL OF CELL SCIENCE, 2009, 122 (06) :775-779
[10]   TRANSLOCATION ACROSS GOLGI VESICLE MEMBRANES - A CHO GLYCOSYLATION MUTANT DEFICIENT IN CMP-SIALIC ACID TRANSPORT [J].
DEUTSCHER, SL ;
NUWAYHID, N ;
STANLEY, P ;
BRILES, EIB ;
HIRSCHBERG, CB .
CELL, 1984, 39 (02) :295-299