Type |
Details |
Score |
Publication |
First Author: |
Mouse Genome Informatics (MGI) and The National Center for Biotechnology Information (NCBI) |
Year: |
2010 |
Journal: |
Database Download |
Title: |
Consensus CDS project |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics Group |
Year: |
2003 |
Journal: |
Database Procedure |
Title: |
Automatic Encodes (AutoE) Reference |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Bairoch A |
Year: |
1999 |
Journal: |
Database Release |
Title: |
SWISS-PROT Annotated protein sequence database |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2005 |
|
Title: |
Obtaining and Loading Genome Assembly Coordinates from Ensembl Annotations |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics |
Year: |
2010 |
Journal: |
Database Release |
Title: |
Protein Ontology Association Load. |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2005 |
|
Title: |
Obtaining and loading genome assembly coordinates from NCBI annotations |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Mouse Genome Informatics Scientific Curators |
Year: |
2009 |
Journal: |
Database Download |
Title: |
Mouse Microarray Data Integration in Mouse Genome Informatics, the Affymetrix GeneChip Mouse Genome 430 2.0 Array Platform |
|
|
|
|
•
•
•
•
•
|
Publication |
First Author: |
Santulli G |
Year: |
2015 |
Journal: |
J Clin Invest |
Title: |
Calcium release channel RyR2 regulates insulin release and glucose homeostasis. |
Volume: |
125 |
Issue: |
5 |
Pages: |
1968-78 |
|
•
•
•
•
•
|
Publication |
First Author: |
Huang G |
Year: |
2007 |
Journal: |
J Biol Chem |
Title: |
Ca2+ signaling in microdomains: Homer1 mediates the interaction between RyR2 and Cav1.2 to regulate excitation-contraction coupling. |
Volume: |
282 |
Issue: |
19 |
Pages: |
14283-90 |
|
•
•
•
•
•
|
Publication |
First Author: |
Wang Y |
Year: |
2020 |
Journal: |
Circulation |
Title: |
Integrin β1D Deficiency-Mediated RyR2 Dysfunction Contributes to Catecholamine-Sensitive Ventricular Tachycardia in Arrhythmogenic Right Ventricular Cardiomyopathy. |
Volume: |
141 |
Issue: |
18 |
Pages: |
1477-1493 |
|
•
•
•
•
•
|
Publication |
First Author: |
Beavers DL |
Year: |
2013 |
Journal: |
J Am Coll Cardiol |
Title: |
Mutation E169K in junctophilin-2 causes atrial fibrillation due to impaired RyR2 stabilization. |
Volume: |
62 |
Issue: |
21 |
Pages: |
2010-9 |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
4966
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; targeted mutation 1, Silvia G Priori |
Allele Type: |
Targeted |
Attribute String: |
Humanized sequence, Modified isoform(s) |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; targeted mutation 1, Susan L Hamilton |
Allele Type: |
Targeted |
|
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; targeted mutation 2, Andrew R Marks |
Allele Type: |
Targeted |
Attribute String: |
Humanized sequence |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; targeted mutation 1.1, Christopher Huang |
Allele Type: |
Targeted |
Attribute String: |
Humanized sequence |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; targeted mutation 3.1, Andrew R Marks |
Allele Type: |
Targeted |
Attribute String: |
Humanized sequence |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; targeted mutation 4.1, Andrew R Marks |
Allele Type: |
Targeted |
|
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; targeted mutation 2, Hector H Valdivia |
Allele Type: |
Targeted |
Attribute String: |
Humanized sequence, Null/knockout |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; targeted mutation 3.1, Hector H Valdivia |
Allele Type: |
Targeted |
Attribute String: |
Hypomorph |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: 129/Sv * C57BL/6 |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: 129S7/SvEvBrd * C57BL/6 |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
C57BL/6J-Ryr2 |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2 |
Background: |
129S/SvEv-Ryr2 |
Zygosity: |
hm |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: 129 * C57BL/6 |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: 129 * C57BL/6 |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: C57BL/6 |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: 129S1/Sv * 129X1/SvJ |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
DO Term |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: 129S7/SvEvBrd * C57BL/6 |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: 129S7/SvEvBrd * C57BL/6J |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Publication |
First Author: |
Dulhunty AF |
Year: |
2005 |
Journal: |
Biochem J |
Title: |
A recently identified member of the glutathione transferase structural family modifies cardiac RyR2 substate activity, coupled gating and activation by Ca2+ and ATP. |
Volume: |
390 |
Issue: |
Pt 1 |
Pages: |
333-43 |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; mutation 2, Bruce Beutler |
Allele Type: |
Chemically induced (ENU) |
Attribute String: |
Not Specified |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; mutation 3, Bruce Beutler |
Allele Type: |
Chemically induced (ENU) |
Attribute String: |
Not Specified |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; endonuclease-mediated mutation 1, S R Wayne Chen |
Allele Type: |
Endonuclease-mediated |
Attribute String: |
Humanized sequence |
|
•
•
•
•
•
|
Allele |
Name: |
transgene insertion 1, Jeffery Molkentin |
Allele Type: |
Transgenic |
Attribute String: |
Inducible, Inserted expressed sequence |
|
•
•
•
•
•
|
Publication |
First Author: |
Cabra V |
Year: |
2016 |
Journal: |
Biophys J |
Title: |
Ultrastructural Analysis of Self-Associated RyR2s. |
Volume: |
110 |
Issue: |
12 |
Pages: |
2651-2662 |
|
•
•
•
•
•
|
Protein Domain |
Type: |
Domain |
Description: |
This SPRY domain is the first of three structural repeats in all three isoforms of the ryanodine receptor (RyR), which are the major Ca2+ release channels in the membranes of sarcoplasmic reticulum (SR) []. There are three RyR genes in mammals; the skeletal RyR1, the cardiac RyR2 and the brain RyR3 []. The three SPRY domains are located in the N-terminal part of the cytoplasmic region of the RyRs []. The first domain may be involved in RyR2 dimerization []. |
|
•
•
•
•
•
|
Publication |
First Author: |
Correll RN |
Year: |
2017 |
Journal: |
Sci Rep |
Title: |
Mitsugumin 29 regulates t-tubule architecture in the failing heart. |
Volume: |
7 |
Issue: |
1 |
Pages: |
5328 |
|
•
•
•
•
•
|
Strain |
Attribute String: |
coisogenic, mutant strain, transgenic |
|
•
•
•
•
•
|
Allele |
Name: |
ryanodine receptor 2, cardiac; mutation 1, Bruce Beutler |
Allele Type: |
Chemically induced (ENU) |
Attribute String: |
Not Specified |
|
•
•
•
•
•
|
Strain |
Attribute String: |
chemically induced mutation, coisogenic, mutant strain |
|
•
•
•
•
•
|
Strain |
Attribute String: |
mutant strain, chemically induced mutation, coisogenic |
|
•
•
•
•
•
|
Strain |
Attribute String: |
chemically induced mutation, coisogenic, mutant strain |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2 |
Background: |
C57BL/6J-Ryr2 |
Zygosity: |
hm |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2 |
Background: |
C57BL/6J-Ryr2 |
Zygosity: |
hm |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2 |
Background: |
C57BL/6J-Ryr2 |
Zygosity: |
hm |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2 |
Background: |
involves: 129 * C57BL/6 |
Zygosity: |
hm |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Genotype |
Symbol: |
Ryr2/Ryr2<+> |
Background: |
involves: 129 * C57BL/6 |
Zygosity: |
ht |
Has Mutant Allele: |
true |
|
•
•
•
•
•
|
Publication |
First Author: |
Lanner JT |
Year: |
2010 |
Journal: |
Cold Spring Harb Perspect Biol |
Title: |
Ryanodine receptors: structure, expression, molecular details, and function in calcium release. |
Volume: |
2 |
Issue: |
11 |
Pages: |
a003996 |
|
•
•
•
•
•
|
Publication |
First Author: |
Tae H |
Year: |
2009 |
Journal: |
Eur Biophys J |
Title: |
Ubiquitous SPRY domains and their role in the skeletal type ryanodine receptor. |
Volume: |
39 |
Issue: |
1 |
Pages: |
51-9 |
|
•
•
•
•
•
|
Publication |
First Author: |
Tae HS |
Year: |
2009 |
Journal: |
Clin Exp Pharmacol Physiol |
Title: |
Molecular recognition of the disordered dihydropyridine receptor II-III loop by a conserved spry domain of the type 1 ryanodine receptor. |
Volume: |
36 |
Issue: |
3 |
Pages: |
346-9 |
|
•
•
•
•
•
|
Publication |
First Author: |
Tae H |
Year: |
2011 |
Journal: |
Channels (Austin) |
Title: |
The elusive role of the SPRY2 domain in RyR1. |
Volume: |
5 |
Issue: |
2 |
Pages: |
148-60 |
|
•
•
•
•
•
|
Protein Domain |
Type: |
Domain |
Description: |
This SPRY domain is the third of three structural repeats in all three isoforms of the ryanodine receptor (RyR), which are the major Ca2+ release channels in the membranes of sarcoplasmic reticulum (SR) []. There are three RyR genes in mammals; the skeletal RyR1, the cardiac RyR2 and the brain RyR3 []. The three SPRY domains are located in the N-terminal part of the cytoplasmic region of the RyRs, but no specific function has been found for this third SPRY domain of the RyRs []. |
|
•
•
•
•
•
|
Protein Domain |
Type: |
Domain |
Description: |
This SPRY domain (SPRY2) is the second of three structural repeats in all three isoforms of the ryanodine receptor (RyR), which are the major Ca2+ release channels in the membranes of sarcoplasmic reticulum (SR). There are three RyR genes in mammals; the skeletal RyR1, the cardiac RyR2 and the brain RyR3. The three SPRY domains are located in the N-terminal part of the cytoplasmic region of the RyRs, The SPRY2 domain has been shown to bind to the dihydropryidine receptor (DHPR) II-III loop and the ASI region of RyR1 [, ]. |
|
•
•
•
•
•
|
HT Experiment |
|
Experiment Type: |
RNA-Seq |
Study Type: |
WT vs. Mutant |
Source: |
GEO |
|
•
•
•
•
•
|
Publication |
First Author: |
Wright NT |
Year: |
2008 |
Journal: |
J Biol Chem |
Title: |
S100A1 and calmodulin compete for the same binding site on ryanodine receptor. |
Volume: |
283 |
Issue: |
39 |
Pages: |
26676-83 |
|
•
•
•
•
•
|
Publication |
First Author: |
Aschar-Sobbi R |
Year: |
2015 |
Journal: |
Nat Commun |
Title: |
Increased atrial arrhythmia susceptibility induced by intense endurance exercise in mice requires TNFα. |
Volume: |
6 |
|
Pages: |
6018 |
|
•
•
•
•
•
|
Publication |
First Author: |
Han RW |
Year: |
2020 |
Journal: |
Mol Brain |
Title: |
Role of lateral amygdala calstabin2 in regulation of fear memory. |
Volume: |
13 |
Issue: |
1 |
Pages: |
35 |
|
•
•
•
•
•
|
Publication |
First Author: |
Ling H |
Year: |
2009 |
Journal: |
J Clin Invest |
Title: |
Requirement for Ca2+/calmodulin-dependent kinase II in the transition from pressure overload-induced cardiac hypertrophy to heart failure in mice. |
Volume: |
119 |
Issue: |
5 |
Pages: |
1230-40 |
|
•
•
•
•
•
|
Publication |
First Author: |
Benson MA |
Year: |
2017 |
Journal: |
Sci Rep |
Title: |
Ryanodine receptors are part of the myospryn complex in cardiac muscle. |
Volume: |
7 |
Issue: |
1 |
Pages: |
6312 |
|
•
•
•
•
•
|
Publication |
First Author: |
Song L |
Year: |
2007 |
Journal: |
J Clin Invest |
Title: |
Calsequestrin 2 (CASQ2) mutations increase expression of calreticulin and ryanodine receptors, causing catecholaminergic polymorphic ventricular tachycardia. |
Volume: |
117 |
Issue: |
7 |
Pages: |
1814-23 |
|
•
•
•
•
•
|
Publication |
First Author: |
Roux-Buisson N |
Year: |
2012 |
Journal: |
Hum Mol Genet |
Title: |
Absence of triadin, a protein of the calcium release complex, is responsible for cardiac arrhythmia with sudden death in human. |
Volume: |
21 |
Issue: |
12 |
Pages: |
2759-67 |
|
•
•
•
•
•
|
Publication |
First Author: |
Zhang IX |
Year: |
2023 |
Journal: |
J Biol Chem |
Title: |
ER stress increases expression of intracellular calcium channel RyR1 to modify Ca(2+) homeostasis in pancreatic beta cells. |
Volume: |
299 |
Issue: |
8 |
Pages: |
105065 |
|
•
•
•
•
•
|
Publication |
First Author: |
Sawada K |
Year: |
2008 |
Journal: |
Neuroscience |
Title: |
Differential alterations in expressions of ryanodine receptor subtypes in cerebellar cortical neurons of an ataxic mutant, rolling mouse Nagoya. |
Volume: |
152 |
Issue: |
3 |
Pages: |
609-17 |
|
•
•
•
•
•
|
Publication |
First Author: |
Wang H |
Year: |
2010 |
Journal: |
J Physiol |
Title: |
Regulation of myocyte contraction via neuronal nitric oxide synthase: role of ryanodine receptor S-nitrosylation. |
Volume: |
588 |
Issue: |
Pt 15 |
Pages: |
2905-17 |
|
•
•
•
•
•
|
Publication |
First Author: |
Chakroborty S |
Year: |
2009 |
Journal: |
J Neurosci |
Title: |
Deviant ryanodine receptor-mediated calcium release resets synaptic homeostasis in presymptomatic 3xTg-AD mice. |
Volume: |
29 |
Issue: |
30 |
Pages: |
9458-70 |
|
•
•
•
•
•
|
Publication |
First Author: |
Zhang T |
Year: |
2010 |
Journal: |
Circ Res |
Title: |
Phospholamban ablation rescues sarcoplasmic reticulum Ca(2+) handling but exacerbates cardiac dysfunction in CaMKIIdelta(C) transgenic mice. |
Volume: |
106 |
Issue: |
2 |
Pages: |
354-62 |
|
•
•
•
•
•
|
Publication |
First Author: |
Kalyanasundaram A |
Year: |
2013 |
Journal: |
Cardiovasc Res |
Title: |
Up-regulation of sarcoplasmic reticulum Ca(2+) uptake leads to cardiac hypertrophy, contractile dysfunction and early mortality in mice deficient in CASQ2. |
Volume: |
98 |
Issue: |
2 |
Pages: |
297-306 |
|
•
•
•
•
•
|
Publication |
First Author: |
Yan J |
Year: |
2018 |
Journal: |
Circ Res |
Title: |
Stress Signaling JNK2 Crosstalk With CaMKII Underlies Enhanced Atrial Arrhythmogenesis. |
Volume: |
122 |
Issue: |
6 |
Pages: |
821-835 |
|
•
•
•
•
•
|
Publication |
First Author: |
Liu Y |
Year: |
2011 |
Journal: |
Assay Drug Dev Technol |
Title: |
Transgenic analysis of the role of FKBP12.6 in cardiac function and intracellular calcium release. |
Volume: |
9 |
Issue: |
6 |
Pages: |
620-7 |
|
•
•
•
•
•
|
Publication |
First Author: |
Matsuki K |
Year: |
2018 |
Journal: |
Am J Physiol Cell Physiol |
Title: |
Negative regulation of cellular Ca2+ mobilization by ryanodine receptor type 3 in mouse mesenteric artery smooth muscle. |
Volume: |
315 |
Issue: |
1 |
Pages: |
C1-C9 |
|
•
•
•
•
•
|
Publication |
First Author: |
Griffin CS |
Year: |
2020 |
Journal: |
Proc Natl Acad Sci U S A |
Title: |
The intracellular Ca2+ release channel TRPML1 regulates lower urinary tract smooth muscle contractility. |
Volume: |
117 |
Issue: |
48 |
Pages: |
30775-30786 |
|
•
•
•
•
•
|
Publication |
First Author: |
Okada H |
Year: |
2013 |
Journal: |
J Clin Invest |
Title: |
Integrins protect cardiomyocytes from ischemia/reperfusion injury. |
Volume: |
123 |
Issue: |
10 |
Pages: |
4294-308 |
|
•
•
•
•
•
|
Publication |
First Author: |
Gellen B |
Year: |
2008 |
Journal: |
Circulation |
Title: |
Conditional FKBP12.6 overexpression in mouse cardiac myocytes prevents triggered ventricular tachycardia through specific alterations in excitation-contraction coupling. |
Volume: |
117 |
Issue: |
14 |
Pages: |
1778-86 |
|
•
•
•
•
•
|
Publication |
First Author: |
Delgado C |
Year: |
2015 |
Journal: |
Cardiovasc Res |
Title: |
NOD1, a new player in cardiac function and calcium handling. |
Volume: |
106 |
Issue: |
3 |
Pages: |
375-86 |
|
•
•
•
•
•
|
Publication |
First Author: |
Brandenburg S |
Year: |
2019 |
Journal: |
JCI Insight |
Title: |
Junctophilin-2 expression rescues atrial dysfunction through polyadic junctional membrane complex biogenesis. |
Volume: |
4 |
Issue: |
12 |
|
|
•
•
•
•
•
|
Publication |
First Author: |
Tarasov M |
Year: |
2023 |
Journal: |
J Clin Invest |
Title: |
NaV1.6 dysregulation within myocardial T-tubules by D96V calmodulin enhances proarrhythmic sodium and calcium mishandling. |
Volume: |
133 |
Issue: |
7 |
|
|
•
•
•
•
•
|
Publication |
First Author: |
Batiste SM |
Year: |
2019 |
Journal: |
Proc Natl Acad Sci U S A |
Title: |
Unnatural verticilide enantiomer inhibits type 2 ryanodine receptor-mediated calcium leak and is antiarrhythmic. |
Volume: |
116 |
Issue: |
11 |
Pages: |
4810-4815 |
|
•
•
•
•
•
|
Publication |
First Author: |
Radwański PB |
Year: |
2015 |
Journal: |
Cardiovasc Res |
Title: |
Neuronal Na+ channel blockade suppresses arrhythmogenic diastolic Ca2+ release. |
Volume: |
106 |
Issue: |
1 |
Pages: |
143-52 |
|
•
•
•
•
•
|
Publication |
First Author: |
Blackwell DJ |
Year: |
2022 |
Journal: |
JCI Insight |
Title: |
The Purkinje-myocardial junction is the anatomic origin of ventricular arrhythmia in CPVT. |
Volume: |
7 |
Issue: |
3 |
|
|
•
•
•
•
•
|
Publication |
First Author: |
Fritz N |
Year: |
2007 |
Journal: |
J Cell Sci |
Title: |
RyR1-specific requirement for depolarization-induced Ca2+ sparks in urinary bladder smooth muscle. |
Volume: |
120 |
Issue: |
Pt 21 |
Pages: |
3784-91 |
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•
•
•
•
•
|
Publication |
First Author: |
Cerrone M |
Year: |
2017 |
Journal: |
Nat Commun |
Title: |
Plakophilin-2 is required for transcription of genes that control calcium cycling and cardiac rhythm. |
Volume: |
8 |
Issue: |
1 |
Pages: |
106 |
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•
•
•
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Publication |
First Author: |
Federico M |
Year: |
2021 |
Journal: |
Sci Rep |
Title: |
CaMKII activation in early diabetic hearts induces altered sarcoplasmic reticulum-mitochondria signaling. |
Volume: |
11 |
Issue: |
1 |
Pages: |
20025 |
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Publication |
First Author: |
Little SC |
Year: |
2015 |
Journal: |
Sci Signal |
Title: |
Protein phosphatase 2A regulatory subunit B56α limits phosphatase activity in the heart. |
Volume: |
8 |
Issue: |
386 |
Pages: |
ra72 |
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•
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Publication |
First Author: |
Yamamoto T |
Year: |
2022 |
Journal: |
J Mol Med (Berl) |
Title: |
I536T variant of RBM20 affects splicing of cardiac structural proteins that are causative for developing dilated cardiomyopathy. |
Volume: |
100 |
Issue: |
12 |
Pages: |
1741-1754 |
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Publication |
First Author: |
Valdivia CR |
Year: |
2010 |
Journal: |
Cardiovasc Res |
Title: |
Loss-of-function mutation of the SCN3B-encoded sodium channel {beta}3 subunit associated with a case of idiopathic ventricular fibrillation. |
Volume: |
86 |
Issue: |
3 |
Pages: |
392-400 |
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Publication |
First Author: |
Seidler T |
Year: |
2011 |
Journal: |
J Mol Cell Cardiol |
Title: |
Limitations of FKBP12.6-directed treatment strategies for maladaptive cardiac remodeling and heart failure. |
Volume: |
50 |
Issue: |
1 |
Pages: |
33-42 |
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Publication |
First Author: |
Zissimopoulos S |
Year: |
2012 |
Journal: |
J Cell Sci |
Title: |
Disparities in the association of the ryanodine receptor and the FK506-binding proteins in mammalian heart. |
Volume: |
125 |
Issue: |
Pt 7 |
Pages: |
1759-69 |
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Publication |
First Author: |
Lewarchik CM |
Year: |
2014 |
Journal: |
Am J Physiol Gastrointest Liver Physiol |
Title: |
The ryanodine receptor is expressed in human pancreatic acinar cells and contributes to acinar cell injury. |
Volume: |
307 |
Issue: |
5 |
Pages: |
G574-81 |
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Publication |
First Author: |
Yuen GK |
Year: |
2017 |
Journal: |
J Mol Cell Cardiol |
Title: |
Subcellular localization of Na/K-ATPase isoforms in ventricular myocytes. |
Volume: |
108 |
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Pages: |
158-169 |
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Publication |
First Author: |
Liu B |
Year: |
2020 |
Journal: |
Int J Mol Sci |
Title: |
Conditional Up-Regulation of SERCA2a Exacerbates RyR2-Dependent Ventricular and Atrial Arrhythmias. |
Volume: |
21 |
Issue: |
7 |
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•
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Publication |
First Author: |
Dridi H |
Year: |
2021 |
Journal: |
Hum Mol Genet |
Title: |
Ryanodine receptor remodeling in cardiomyopathy and muscular dystrophy caused by lamin A/C gene mutation. |
Volume: |
29 |
Issue: |
24 |
Pages: |
3919-3934 |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
5035
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
4863
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
4868
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
4966
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
5033
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
4858
 |
Fragment?: |
false |
|
•
•
•
•
•
|
Protein |
Organism: |
Mus musculus/domesticus |
Length: |
5061
 |
Fragment?: |
false |
|
•
•
•
•
•
|