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1 result from differential promoter usage and alternate splicing.
2 coding sequence diversity, where insects use alternate splicing.
3 t least three protein isoforms that arise by alternate splicing.
4 nylation and other Flt1/sFlt1 transcripts by alternate splicing.
5 to the 5' portion of intron 11 also promoted alternate splicing.
6 nus and in the active site for ATPase due to alternate splicing.
7 through the use of alternative promoters and alternate splicing.
8 NAs that vary via alternate promoter use and alternate splicing.
9 by the FANTOM2 clones revealed a pattern of alternate splicing.
10 es, MACROH2A1.1 and MACROH2A1.2, produced by alternate splicing.
11 ll-length and truncated sAC are generated by alternate splicing.
12 sm in the cyclin D1 gene enhances the gene's alternate splicing.
13 and betaII-PKC, isotypes that are derived by alternate splicing.
14 er-molecular-weight forms of Bin1 protein by alternate splicing.
15 RNase protection experiments reveal no such alternate splicing.
17 of IMPDH1 in human retina are the result of alternate splicing and alternate start sites of translat
19 eterogeneity of human sFlt1 that arises from alternate splicing and from alternative polyadenylation
20 tial mass differences such as polymorphisms, alternate splicing and post-translational modifications
22 r in the form of tissue-specific expression, alternate splicing, and 5' end mRNA heterogeneity, as we
26 *) isoforms of E6, which originate by way of alternate splicing, can modulate procaspase 8 stability.
27 d a protein product of a potentially related alternate splicing event (cyclin D1b) may influence canc
28 t abundant mRNA isoforms are derived from an alternate splicing event that inserts an evolutionarily
29 sibility that the breast cancer risk and the alternate splicing event were due to the same causal SNP
32 is transcriptionally complex, with multiple alternate splicing events, antisense transcription, and
34 rst study showing tumor overexpression of an alternate splicing factor resulting in drug resistance.
35 ein binds to p32, a component of the ASF/SF2 alternate splicing factors; in cells infected with a rec
39 odents that are characterized by significant alternate splicing generating isoforms capable of negati
41 m from the exon 11 splice donor site promote alternate splicing in both wild-type and HGPS fibroblast
42 nces 5' to the alternate splice site reduced alternate splicing in HGPS cells and modestly lowered pr
46 A differential pattern of expression and alternate splicing indicate several levels of RIN1 regul
47 ediatric t(8;21) AMLs, likely resulting from alternate splicing, internal deletions and/or breakpoint
57 -terminal extension (CTE) and the associated alternate splicing mechanism, which splices the RCA-alph
58 Both glucagon and GLP-1 are derived from alternate splicing of a common precursor, proglucagon by
60 volving the RNA processing apparatus and the alternate splicing of apoptosis regulatory proteins.
74 ifference is reflected in the expression and alternate splicing of the protein subunit of the telomer
75 ducts from related genes; from differential, alternate splicing of the same gene product; from the us
76 The two cDNAs were predicted to arise from alternate splicing of the same gene to yield different m
77 d with GGN1 and GGN3, two proteins formed by alternate splicing of the same gene, gametogenetin (Ggn)
81 s are characterized in terms of copy number, alternate splicing of their transcripts, and the proport
83 tation/artifacts in vivo (cryptic promoters, alternate splicing) or in vitro (nuclease degradation).
89 butions to the heterogeneity of SMGC include alternate splicing, proteolysis and N-glycosylation.
91 esults suggest that the insertion creates an alternate splicing site, which eliminates not only the i
92 These observations suggest that, through alternate splicing, the H(hsp/CP) transgene produces a r
95 single zinc-finger gene can be used, through alternate splicing, to fulfill different functions in th
96 lational modifications, amino acid variants, alternate splicing variants and protein cleavage pattern
98 ducts of the same alpha-TM gene produced via alternate splicing, whereas ATmC-1 and ATmS-1 are the id
99 in the interdomain linker and resulted from alternate splicing within intron 4 of the transcript.
100 encoding the PIK-like protein ATR undergoes alternate splicing within the region of the mRNA encodin
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