Connection
Kurt Beam to Muscle Fibers, Skeletal
This is a "connection" page, showing publications Kurt Beam has written about Muscle Fibers, Skeletal.
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Connection Strength |
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3.837 |
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Polster A, Nelson BR, Papadopoulos S, Olson EN, Beam KG. Stac proteins associate with the critical domain for excitation-contraction coupling in the II-III loop of CaV1.1. J Gen Physiol. 2018 04 02; 150(4):613-624.
Score: 0.543
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Polster A, Perni S, Bichraoui H, Beam KG. Stac adaptor proteins regulate trafficking and function of muscle and neuronal L-type Ca2+ channels. Proc Natl Acad Sci U S A. 2015 Jan 13; 112(2):602-6.
Score: 0.437
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Bannister RA, Beam KG. The cardiac alpha(1C) subunit can support excitation-triggered Ca2+ entry in dysgenic and dyspedic myotubes. Channels (Austin). 2009 Jul-Aug; 3(4):268-73.
Score: 0.300
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Bannister RA, Colecraft HM, Beam KG. Rem inhibits skeletal muscle EC coupling by reducing the number of functional L-type Ca2+ channels. Biophys J. 2008 Apr 01; 94(7):2631-8.
Score: 0.269
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Papadopoulos S, Leuranguer V, Bannister RA, Beam KG. Mapping sites of potential proximity between the dihydropyridine receptor and RyR1 in muscle using a cyan fluorescent protein-yellow fluorescent protein tandem as a fluorescence resonance energy transfer probe. J Biol Chem. 2004 Oct 15; 279(42):44046-56.
Score: 0.212
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Wilkens CM, Beam KG. Insertion of alpha1S II-III loop and C terminal sequences into alpha1H fails to restore excitation-contraction coupling in dysgenic myotubes. J Muscle Res Cell Motil. 2003; 24(1):99-109.
Score: 0.190
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Dayal A, Perni S, Franzini-Armstrong C, Beam KG, Grabner M. The distal C terminus of the dihydropyridine receptor ?1a subunit is essential for tetrad formation in skeletal muscle. Proc Natl Acad Sci U S A. 2022 05 10; 119(19):e2201136119.
Score: 0.182
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Perni S, Beam K. Junctophilins 1, 2, and 3 all support voltage-induced Ca2+ release despite considerable divergence. J Gen Physiol. 2022 09 05; 154(9).
Score: 0.178
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Suda N, Dirksen RT, Gonzalez A, Beam KG. Low serum promotes maturation of excitation-contraction coupling in myotubes. Pflugers Arch. 2000 Mar; 439(5):555-8.
Score: 0.156
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Nakai J, Ogura T, Protasi F, Franzini-Armstrong C, Allen PD, Beam KG. Functional nonequality of the cardiac and skeletal ryanodine receptors. Proc Natl Acad Sci U S A. 1997 Feb 04; 94(3):1019-22.
Score: 0.126
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Polster A, Nelson BR, Olson EN, Beam KG. Stac3 has a direct role in skeletal muscle-type excitation-contraction coupling that is disrupted by a myopathy-causing mutation. Proc Natl Acad Sci U S A. 2016 09 27; 113(39):10986-91.
Score: 0.123
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Bannister RA, Sheridan DC, Beam KG. Distinct Components of Retrograde Ca(V)1.1-RyR1 Coupling Revealed by a Lethal Mutation in RyR1. Biophys J. 2016 Feb 23; 110(4):912-21.
Score: 0.118
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Ohrtman JD, Romberg CF, Moua O, Bannister RA, Levinson SR, Beam KG. Apparent lack of physical or functional interaction between CaV1.1 and its distal C terminus. J Gen Physiol. 2015 Apr; 145(4):303-14.
Score: 0.111
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Dirksen RT, Beam KG. Single calcium channel behavior in native skeletal muscle. J Gen Physiol. 1995 Feb; 105(2):227-47.
Score: 0.110
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Bannister RA, Beam KG. Impaired gating of an L-Type Ca(2+) channel carrying a mutation linked to malignant hyperthermia. Biophys J. 2013 May 07; 104(9):1917-22.
Score: 0.097
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Polster A, Ohrtman JD, Beam KG, Papadopoulos S. Fluorescence resonance energy transfer (FRET) indicates that association with the type I ryanodine receptor (RyR1) causes reorientation of multiple cytoplasmic domains of the dihydropyridine receptor (DHPR) a(1S) subunit. J Biol Chem. 2012 Nov 30; 287(49):41560-8.
Score: 0.094
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Sheridan DC, Moua O, Lorenzon NM, Beam KG. Bimolecular fluorescence complementation and targeted biotinylation provide insight into the topology of the skeletal muscle Ca ( 2+) channel ?1a subunit. Channels (Austin). 2012 Jan-Feb; 6(1):26-40.
Score: 0.089
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Bannister RA, Beam KG. Ryanodine modification of RyR1 retrogradely affects L-type Ca(2+) channel gating in skeletal muscle. J Muscle Res Cell Motil. 2009; 30(5-6):217-23.
Score: 0.076
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Bannister RA, Pessah IN, Beam KG. The skeletal L-type Ca(2+) current is a major contributor to excitation-coupled Ca(2+) entry. J Gen Physiol. 2009 Jan; 133(1):79-91.
Score: 0.072
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Gach MP, Cherednichenko G, Haarmann C, Lopez JR, Beam KG, Pessah IN, Franzini-Armstrong C, Allen PD. Alpha2delta1 dihydropyridine receptor subunit is a critical element for excitation-coupled calcium entry but not for formation of tetrads in skeletal myotubes. Biophys J. 2008 Apr 15; 94(8):3023-34.
Score: 0.067
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Lorenzon NM, Beam KG. Accessibility of targeted DHPR sites to streptavidin and functional effects of binding on EC coupling. J Gen Physiol. 2007 Oct; 130(4):379-88.
Score: 0.066
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Cherednichenko G, Hurne AM, Fessenden JD, Lee EH, Allen PD, Beam KG, Pessah IN. Conformational activation of Ca2+ entry by depolarization of skeletal myotubes. Proc Natl Acad Sci U S A. 2004 Nov 02; 101(44):15793-8.
Score: 0.054
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Leuranguer V, Dirksen RT, Beam KG. Potentiated L-type Ca2+ channels rectify. J Gen Physiol. 2003 Jun; 121(6):541-50.
Score: 0.049
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Protasi F, Paolini C, Nakai J, Beam KG, Franzini-Armstrong C, Allen PD. Multiple regions of RyR1 mediate functional and structural interactions with alpha(1S)-dihydropyridine receptors in skeletal muscle. Biophys J. 2002 Dec; 83(6):3230-44.
Score: 0.047
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Polster A, Perni S, Filipova D, Moua O, Ohrtman JD, Bichraoui H, Beam KG, Papadopoulos S. Junctional trafficking and restoration of retrograde signaling by the cytoplasmic RyR1 domain. J Gen Physiol. 2018 02 05; 150(2):293-306.
Score: 0.034
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Cherednichenko G, Zhang R, Bannister RA, Timofeyev V, Li N, Fritsch EB, Feng W, Barrientos GC, Schebb NH, Hammock BD, Beam KG, Chiamvimonvat N, Pessah IN. Triclosan impairs excitation-contraction coupling and Ca2+ dynamics in striated muscle. Proc Natl Acad Sci U S A. 2012 Aug 28; 109(35):14158-63.
Score: 0.023
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Hurne AM, O'Brien JJ, Wingrove D, Cherednichenko G, Allen PD, Beam KG, Pessah IN. Ryanodine receptor type 1 (RyR1) mutations C4958S and C4961S reveal excitation-coupled calcium entry (ECCE) is independent of sarcoplasmic reticulum store depletion. J Biol Chem. 2005 Nov 04; 280(44):36994-7004.
Score: 0.014
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Connection Strength
The connection strength for concepts is the sum of the scores for each matching publication.
Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.
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