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Maruoka ND, Steele DF, Au BP, Dan P, Zhang X, Moore ED, Fedida D. alpha-actinin-2 couples to cardiac Kv1.5 channels, regulating current density and channel localization in HEK cells. FEBS Letters. May 2000, 473 (2): 188–94. PMID 10812072. doi:10.1016/S0014-5793(00)01521-0.
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Wyszynski M, Lin J, Rao A, Nigh E, Beggs AH, Craig AM, Sheng M. Competitive binding of alpha-actinin and calmodulin to the NMDA receptor. Nature. January 1997, 385 (6615): 439–42. PMID 9009191. S2CID 4266742. doi:10.1038/385439a0.
Galliano MF, Huet C, Frygelius J, Polgren A, Wewer UM, Engvall E. Binding of ADAM12, a marker of skeletal muscle regeneration, to the muscle-specific actin-binding protein, alpha -actinin-2, is required for myoblast fusion. The Journal of Biological Chemistry. May 2000, 275 (18): 13933–9. PMID 10788519. doi:10.1074/jbc.275.18.13933.
Chan Y, Tong HQ, Beggs AH, Kunkel LM. Human skeletal muscle-specific alpha-actinin-2 and -3 isoforms form homodimers and heterodimers in vitro and in vivo. Biochemical and Biophysical Research Communications. July 1998, 248 (1): 134–9. PMID 9675099. doi:10.1006/bbrc.1998.8920.
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Chiu C, Bagnall RD, Ingles J, Yeates L, Kennerson M, Donald JA, Jormakka M, Lind JM, Semsarian C. Mutations in alpha-actinin-2 cause hypertrophic cardiomyopathy: a genome-wide analysis. Journal of the American College of Cardiology. March 2010, 55 (11): 1127–35. PMID 20022194. doi:10.1016/j.jacc.2009.11.016.
Mohapatra B, Jimenez S, Lin JH, Bowles KR, Coveler KJ, Marx JG, Chrisco MA, Murphy RT, Lurie PR, Schwartz RJ, Elliott PM, Vatta M, McKenna W, Towbin JA, Bowles NE. Mutations in the muscle LIM protein and alpha-actinin-2 genes in dilated cardiomyopathy and endocardial fibroelastosis. Molecular Genetics and Metabolism. 2003, 80 (1–2): 207–15. PMID 14567970. doi:10.1016/s1096-7192(03)00142-2.
Eldstrom J, Choi WS, Steele DF, Fedida D. SAP97 increases Kv1.5 currents through an indirect N-terminal mechanism. FEBS Letters. July 2003, 547 (1–3): 205–11. PMID 12860415. doi:10.1016/S0014-5793(03)00668-9.
Maruoka ND, Steele DF, Au BP, Dan P, Zhang X, Moore ED, Fedida D. alpha-actinin-2 couples to cardiac Kv1.5 channels, regulating current density and channel localization in HEK cells. FEBS Letters. May 2000, 473 (2): 188–94. PMID 10812072. doi:10.1016/S0014-5793(00)01521-0.
Morris JA, Kandpal G, Ma L, Austin CP. DISC1 (Disrupted-In-Schizophrenia 1) is a centrosome-associated protein that interacts with MAP1A, MIPT3, ATF4/5 and NUDEL: regulation and loss of interaction with mutation. Human Molecular Genetics. July 2003, 12 (13): 1591–608. PMID 12812986. doi:10.1093/hmg/ddg162.
Faulkner G, Pallavicini A, Comelli A, Salamon M, Bortoletto G, Ievolella C, Trevisan S, Kojic' S, Dalla Vecchia F, Laveder P, Valle G, Lanfranchi G. FATZ, a filamin-, actinin-, and telethonin-binding protein of the Z-disc of skeletal muscle. The Journal of Biological Chemistry. December 2000, 275 (52): 41234–42. PMID 10984498. doi:10.1074/jbc.M007493200.
Wyszynski M, Lin J, Rao A, Nigh E, Beggs AH, Craig AM, Sheng M. Competitive binding of alpha-actinin and calmodulin to the NMDA receptor. Nature. January 1997, 385 (6615): 439–42. PMID 9009191. S2CID 4266742. doi:10.1038/385439a0.
Galliano MF, Huet C, Frygelius J, Polgren A, Wewer UM, Engvall E. Binding of ADAM12, a marker of skeletal muscle regeneration, to the muscle-specific actin-binding protein, alpha -actinin-2, is required for myoblast fusion. The Journal of Biological Chemistry. May 2000, 275 (18): 13933–9. PMID 10788519. doi:10.1074/jbc.275.18.13933.
Chan Y, Tong HQ, Beggs AH, Kunkel LM. Human skeletal muscle-specific alpha-actinin-2 and -3 isoforms form homodimers and heterodimers in vitro and in vivo. Biochemical and Biophysical Research Communications. July 1998, 248 (1): 134–9. PMID 9675099. doi:10.1006/bbrc.1998.8920.
Pomiès P, Macalma T, Beckerle MC. Purification and characterization of an alpha-actinin-binding PDZ-LIM protein that is up-regulated during muscle differentiation. The Journal of Biological Chemistry. October 1999, 274 (41): 29242–50. PMID 10506181. doi:10.1074/jbc.274.41.29242.
Mukai H, Toshimori M, Shibata H, Takanaga H, Kitagawa M, Miyahara M, Shimakawa M, Ono Y. Interaction of PKN with alpha-actinin. The Journal of Biological Chemistry. February 1997, 272 (8): 4740–6. PMID 9030526. doi:10.1074/jbc.272.8.4740.
Salmikangas P, Mykkänen OM, Grönholm M, Heiska L, Kere J, Carpén O. Myotilin, a novel sarcomeric protein with two Ig-like domains, is encoded by a candidate gene for limb-girdle muscular dystrophy. Human Molecular Genetics. July 1999, 8 (7): 1329–36. PMID 10369880. doi:10.1093/hmg/8.7.1329.
Linnemann A, van der Ven PF, Vakeel P, Albinus B, Simonis D, Bendas G, Schenk JA, Micheel B, Kley RA, Fürst DO. The sarcomeric Z-disc component myopodin is a multiadapter protein that interacts with filamin and alpha-actinin. European Journal of Cell Biology. September 2010, 89 (9): 681–92. PMID 20554076. doi:10.1016/j.ejcb.2010.04.004.
Chiu C, Bagnall RD, Ingles J, Yeates L, Kennerson M, Donald JA, Jormakka M, Lind JM, Semsarian C. Mutations in alpha-actinin-2 cause hypertrophic cardiomyopathy: a genome-wide analysis. Journal of the American College of Cardiology. March 2010, 55 (11): 1127–35. PMID 20022194. doi:10.1016/j.jacc.2009.11.016.
Mohapatra B, Jimenez S, Lin JH, Bowles KR, Coveler KJ, Marx JG, Chrisco MA, Murphy RT, Lurie PR, Schwartz RJ, Elliott PM, Vatta M, McKenna W, Towbin JA, Bowles NE. Mutations in the muscle LIM protein and alpha-actinin-2 genes in dilated cardiomyopathy and endocardial fibroelastosis. Molecular Genetics and Metabolism. 2003, 80 (1–2): 207–15. PMID 14567970. doi:10.1016/s1096-7192(03)00142-2.
Wyszynski M, Lin J, Rao A, Nigh E, Beggs AH, Craig AM, Sheng M. Competitive binding of alpha-actinin and calmodulin to the NMDA receptor. Nature. January 1997, 385 (6615): 439–42. PMID 9009191. S2CID 4266742. doi:10.1038/385439a0.
Fukami K, Furuhashi K, Inagaki M, Endo T, Hatano S, Takenawa T. Requirement of phosphatidylinositol 4,5-bisphosphate for alpha-actinin function. Nature. September 1992, 359 (6391): 150–2. PMID 1326084. S2CID 4372960. doi:10.1038/359150a0.