Regulation of localization and function of L-type calcium channels by junctophilins

2022 ◽  
Vol 157 (1) ◽  
pp. 4-8
Author(s):  
Tsutomu Nakada ◽  
Mitsuhiko Yamada
2020 ◽  
Vol 13 (1) ◽  
Author(s):  
Vendula Ficelova ◽  
Ivana A. Souza ◽  
Leos Cmarko ◽  
Maria A. Gandini ◽  
Robin N. Stringer ◽  
...  

Abstract Low-voltage-activated T-type calcium channels are important contributors to nervous system function. Post-translational modification of these channels has emerged as an important mechanism to control channel activity. Previous studies have documented the importance of asparagine (N)-linked glycosylation and identified several asparagine residues within the canonical consensus sequence N-X-S/T that is essential for the expression and function of Cav3.2 channels. Here, we explored the functional role of non-canonical N-glycosylation motifs in the conformation N-X-C based on site directed mutagenesis. Using a combination of electrophysiological recordings and surface biotinylation assays, we show that asparagines N345 and N1780 located in the motifs NVC and NPC, respectively, are essential for the expression of the human Cav3.2 channel in the plasma membrane. Therefore, these newly identified asparagine residues within non-canonical motifs add to those previously reported in canonical sites and suggest that N-glycosylation of Cav3.2 may also occur at non-canonical motifs to control expression of the channel in the plasma membrane. It is also the first study to report the functional importance of non-canonical N-glycosylation motifs in an ion channel.


2012 ◽  
pp. 1984-1992
Author(s):  
Marta Vázquez-Cedeira ◽  
Diana M. Monsalve ◽  
Marta Sanz-García ◽  
Pedro A. Lazo ◽  
Thierry Galli ◽  
...  

1993 ◽  
Vol 707 (1 Molecular Bas) ◽  
pp. 81-86 ◽  
Author(s):  
TSUTOMU TANABE ◽  
ATSUSHI MIKAMI ◽  
TETSUHIRO NIIDOME ◽  
SHOSAKU NUMA ◽  
BRETT A. ADAMS ◽  
...  

2013 ◽  
Vol 104 (2) ◽  
pp. 462a
Author(s):  
Ioannis E. Michailidis ◽  
Kathryn Abele ◽  
Wei K. Zhang ◽  
Lawrence Geyman ◽  
Bochao Lin ◽  
...  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
James O. Meyer ◽  
Annette C. Dolphin

AbstractN-type voltage-gated calcium channels (CaV2.2) are predominantly expressed at presynaptic terminals, and their function is regulated by auxiliary α2δ and β subunits. All four mammalian α2δ subunits enhance calcium currents through CaV1 and CaV2 channels, and this increase is attributed, in part, to increased CaV expression at the plasma membrane. In the present study we provide evidence that α2δ-1, like α2δ-2, is recycled to the plasma membrane through a Rab11a-dependent endosomal recycling pathway. Using a dominant-negative Rab11a mutant, Rab11a(S25N), we show that α2δ-1 increases plasma membrane CaV2.2 expression by increasing the rate and extent of net forward CaV2.2 trafficking in a Rab11a-dependent manner. Dominant-negative Rab11a also reduces the ability of α2δ-1 to increase CaV2.2 expression on the cell-surface of hippocampal neurites. In contrast, α2δ-3 does not enhance rapid forward CaV2.2 trafficking, regardless of whether Rab11a(S25N) is present. In addition, whole-cell CaV2.2 currents are reduced by co-expression of Rab11a(S25N) in the presence of α2δ-1, but not α2δ-3. Taken together these data suggest that α2δ subtypes participate in distinct trafficking pathways which in turn influence the localisation and function of CaV2.2.


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