Targets multiple exon skipping with size difference of 147
Short product(s): 208
Long product(s): 355
Isoform sequences
Targets single exon skipping with size difference of 75
Short product(s): 208
Long product(s): 283
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 143
Short product(s): 351
Long product(s): 494, 497
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 71
Short product(s): 351
Long product(s): 422
Isoform sequences
Targets multiple exon skipping with size difference of 213
Short product(s): 138
Long product(s): 351
Isoform sequences
Targets single exon skipping with size difference of 70
Short product(s): 138
Long product(s): 208
Isoform sequences
Targets multiple exon skipping with size difference of 359
Short product(s): 138
Long product(s): 497
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 142
Short product(s): 280
Long product(s): 422
Isoform sequences
Targets single exon skipping with size difference of 72
Short product(s): 138
Long product(s): 210
Isoform sequences
Targets intron retention with size difference of 598
Short product(s): 351
Long product(s): 1038
Isoform sequences
Targets single exon skipping with size difference of 70
Short product(s): 210
Long product(s): 280, 351, 352, 494
Isoform sequences
Targets alternative donor with size difference of 142
Short product(s): 280, 352, 355
Long product(s): 422, 494, 497
Isoform sequences
Targets multiple exon skipping with size difference of 217
Short product(s): 138
Long product(s): 355
Isoform sequences
Targets single exon skipping with size difference of 72
Short product(s): 208
Long product(s): 280
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 3
Short product(s): 280
Long product(s): 283
Isoform sequences
Targets alternative acceptor with size difference of 3
Short product(s): 280, 351, 352, 494
Long product(s): 283, 355, 497, 1038
Isoform sequences
Targets multiple exon skipping with size difference of 143
Short product(s): 208
Long product(s): 351
Isoform sequences
Targets single exon skipping with size difference of 71
Short product(s): 210, 280, 283
Long product(s): 351
Isoform sequences
Targets intron retention with size difference of 86
Short product(s): 351
Long product(s): 1038
Isoform sequences
Targets multiple exon skipping with size difference of 142
Short product(s): 138
Long product(s): 280
Isoform sequences
Targets intron retention with size difference of 127
Short product(s): 422, 494, 497
Long product(s): 1038
Isoform sequences
Targets multiple exon skipping with size difference of 286
Short product(s): 208
Long product(s): 494
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 0
Short product(s): 280
Long product(s): 280
Isoform sequences
Targets multiple exon skipping with size difference of 356
Short product(s): 138
Long product(s): 494
Isoform sequences
Targets single exon skipping with size difference of 214
Short product(s): 210, 280, 283
Long product(s): 494, 497
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 71
Short product(s): 280
Long product(s): 351
Isoform sequences
Targets intron retention with size difference of 414
Short product(s): 352, 355, 494, 497
Long product(s): 1038
Isoform sequences
Targets single exon skipping with size difference of 75
Short product(s): 280, 422
Long product(s): 355, 497
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 212
Short product(s): 210
Long product(s): 422
Isoform sequences
Targets intron retention with size difference of 269
Short product(s): 280, 352, 355
Long product(s): 1038
Isoform sequences
Targets exon skipping and alternative donor or acceptor with size difference of 73
Short product(s): 210
Long product(s): 283, 355, 497, 1038
Isoform sequences
Targets multiple exon skipping with size difference of 142
Short product(s): 138
Long product(s): 280
Isoform sequences
Targets single exon skipping with size difference of 72
Short product(s): 280, 422
Long product(s): 352, 494
Isoform sequences
Targets multiple exon skipping with size difference of 289
Short product(s): 208
Long product(s): 497
Isoform sequences
Targets multiple exon skipping with size difference of 214
Short product(s): 138
Long product(s): 352
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 1
Short product(s): 351
Long product(s): 352, 355
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 139
Short product(s): 283
Long product(s): 422
Isoform sequences
Targets single exon skipping with size difference of 72
Short product(s): 210, 280, 283
Long product(s): 352, 355
Isoform sequences
Targets alternative acceptor with size difference of 489
Short product(s): 280, 422
Long product(s): 1038
Isoform sequences
Targets alternative acceptor with size difference of 830
Short product(s): 208
Long product(s): 1038
Isoform sequences
Targets multiple exon skipping with size difference of 144
Short product(s): 208
Long product(s): 352
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 70
Short product(s): 210
Long product(s): 280
Isoform sequences
Targets multiple exon skipping with size difference of 284
Short product(s): 138
Long product(s): 422
Isoform sequences
Targets single exon skipping with size difference of 72
Short product(s): 208
Long product(s): 280
Isoform sequences
Targets mutually exclusive exon skipping with size difference of 2
Short product(s): 208
Long product(s): 210
Isoform sequences
Targets multiple exon skipping with size difference of 145
Short product(s): 138
Long product(s): 283
Isoform sequences
Targets intron retention with size difference of 755
Short product(s): 210, 280, 283
Long product(s): 1038
Isoform sequences
Targets single exon skipping with size difference of 214
Short product(s): 208
Long product(s): 422
Isoform sequences
Targets exon skipping and alternative donor or acceptor with size difference of 900
Short product(s): 138
Long product(s): 1038
Isoform sequences
Copyright ©2008,2017, all rights reserved.