Publications
Publications
*Equal contributions; # co-corresponding authors
Chang KJ, Agrawal I, Vainshtein A, Ho WY, Xin W, Tucker-Kellogg G, Susuki K, Peles E, Ling SC#, Chan JR#. (2021) TDP-43 maximizes nerve conduction velocity by repressing a cryptic exon for paranodal junction assembly in Schwann cells. eLife 10, e64456. [PubMed] <Click for the graphical abstract>
Susuki K, Zollinger DR, Chang KJ, Zhang C, Huang CY, Tsai CR, Galiano MR, Liu Y, Benusa SD, Yermakov LM, Griggs RB, Dupree JL, Rasband MN. (2018) Glial βII spectrin contributes to paranode formation and maintenance. J Neurosci 38, 6063-75. [PubMed]
Petersen MA, Ryu JK*, Chang KJ*, Etxeberria A, Bardehle S, Mendiola AS, Kamau-Devers W, Fancy SPJ, Thor A, Bushong EA, Baeza-Raja B, Syme CA, Wu MD, Rios Coronado PE, Meyer-Franke A, Yahn S, Pous L, Lee JK, Schachtrup C, Lassmann H, Huang EJ, Han MH, Absinta M, Reich DS, Ellisman MH, Rowitch DH, Chan JR, Akassoglou K. (2017) Fibrinogen activates BMP signaling in oligodendrocyte progenitor cells and inhibits remyelination after vascular damage. Neuron 96, 1003-12. [PubMed]
Chang KJ, Redmond SA, and Chan JR. (2016) Remodeling myelination: implications for mechanisms of neural plasticity. Nat Neurosci 19, 190-97. [PubMed]
Zollinger DR, Chang KJ, Baalman K, Kim S, and Rasband MN. (2015) The polarity protein Pals1 regulates radial sorting of axons. J Neurosci 35, 10474-84. [PubMed]
Chang KJ, and Rasband MN. (2015) Cell surface protein-protein binding on COS-7 cells. Bio Protoc 4, e1020. [PubMed]
Frischknecht R, Chang KJ, Rasband MN, and Seidenbecher CI. (2014) Neural ECM molecules in axonal and synaptic homeostatic plasticity. Prog Brain Res 214, 81-100. [PubMed]
Chang KJ, Zollinger DR, Susuki K, Sherman DL, Makara MA, Brophy PJ, Cooper EC, Bennett V, Mohler PJ, and Rasband MN. (2014) Glial ankyrins facilitate paranodal axoglial junction assembly. Nat Neurosci 17, 1673-81. [PubMed] <Click for the graphical abstract>
Ho TS, Zollinger DR, Chang KJ, Xu M, Cooper EC, Stankewich MC, Bennett V, and Rasband MN. (2014) A hierarchy of ankyrin-spectrin complexes clusters sodium channels at nodes of Ranvier. Nat Neurosci 17, 1664-72. [PubMed]
Chen HC, Chang KJ, Su YL, Huang YH, and Cheng SC. (2014) Structural requirement of Ntc77 for spliceosome activation and first catalytic step. Nucleic Acids Res 42, 12261-71. [PubMed]
Chang KJ, and Rasband MN. (2013) Excitable domains of myelinated nerves: axon initial segments and nodes of Ranvier. Curr Top Membr 72, 159-92. [PubMed]
Susuki K*, Chang KJ*, Zollinger DR, Liu Y, Ogawa Y, Eshed-Eisenbach Y, Dours-Zimmermann MT, Oses-Prieto JA, Burlingame AL, Seidenbecher CI, Zimmermann DR, Oohashi T, Peles E, and Rasband MN. (2013) Three mechanisms assemble central nervous system nodes of Ranvier. Neuron 78, 469-82. [PubMed]
Galiano MR*, Jha S*, Ho TS, Zhang C, Ogawa Y, Chang KJ, Stankewich MC, Mohler PJ, and Rasband MN. (2012) A distal axonal cytoskeleton forms an intra-axonal boundary that controls axon initial segment assembly. Cell 149, 1125-39. [PubMed]
Gasser A*, Ho TS*, Cheng X, Chang KJ, Waxman SG, Rasband MN, and Dib-Hajj SD. (2012) An ankyrinG-binding motif is necessary and sufficient for targeting Nav1.6 sodium channels to axon initial segments and nodes of Ranvier. J Neurosci 32, 7232-43. [PubMed]
Chang KJ*, Susuki K*, Dours-Zimmermann MT, Zimmermann DR, and Rasband MN. (2010) Oligodendrocyte myelin glycoprotein does not influence node of Ranvier structure or assembly. J Neurosci 30, 14476-81. [PubMed]
Chang KJ, Chen HC, and Cheng SC. (2009) Ntc90 is required for recruiting first step factor Yju2 but not for spliceosome activation. RNA 15, 1729-39. [PubMed]
Tsai RT*, Tseng CK*, Lee PJ, Chen HC, Fu RH, Chang KJ, Yeh FL, and Cheng SC. (2007) Dynamic interactions of Ntr1-Ntr2 with Prp43 and with U5 govern the recruitment of Prp43 to mediate spliceosome disassembly. Mol Cell Biol 23, 8027-37. [PubMed]