Neural expression and regulation of NSSR1 proteins
Neural salient serine-/arginine-rich protein 1 (NSSR1) is a newly identified SR protein that regulates pre-mRNA splicing. In the present study, we demonstrated the neural specialization of NSSR1 protein expression in humans and mice. Strong immunoreactive signals to NSSR1 were observed in mouse cere...
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Published in | Neuroreport Vol. 14; no. 14; p. 1847 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
England
06.10.2003
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Abstract | Neural salient serine-/arginine-rich protein 1 (NSSR1) is a newly identified SR protein that regulates pre-mRNA splicing. In the present study, we demonstrated the neural specialization of NSSR1 protein expression in humans and mice. Strong immunoreactive signals to NSSR1 were observed in mouse cerebral neurons, cerebellar Purkinje cells, pyramidal neurons in CA1, CA2 and CA3 regions of the hippocampus and granule cells in the dentate gyrus. In primarily cultured mouse neural progenitor cells (NPCs), at the undifferentiated status, NSSR1 transcripts were detected, but not the proteins. In comparison, in differentiated NPCs both NSSR1 transcripts and proteins were expressed and significantly up-regulated. The results suggest that NSSR1 is important in regulation of brain function and neural differentiation, possibly via regulating the neural-specific alternative splicing of genes. |
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AbstractList | Neural salient serine-/arginine-rich protein 1 (NSSR1) is a newly identified SR protein that regulates pre-mRNA splicing. In the present study, we demonstrated the neural specialization of NSSR1 protein expression in humans and mice. Strong immunoreactive signals to NSSR1 were observed in mouse cerebral neurons, cerebellar Purkinje cells, pyramidal neurons in CA1, CA2 and CA3 regions of the hippocampus and granule cells in the dentate gyrus. In primarily cultured mouse neural progenitor cells (NPCs), at the undifferentiated status, NSSR1 transcripts were detected, but not the proteins. In comparison, in differentiated NPCs both NSSR1 transcripts and proteins were expressed and significantly up-regulated. The results suggest that NSSR1 is important in regulation of brain function and neural differentiation, possibly via regulating the neural-specific alternative splicing of genes. |
Author | Liu, Xuan Xu, Ping Liu, Lei Chen, Xianhua Lin, Jun-Ji |
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BackLink | https://www.ncbi.nlm.nih.gov/pubmed/14534433$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1051_e3sconf_202020601019 crossref_primary_10_1002_glia_22787 crossref_primary_10_1016_j_jchemneu_2011_10_002 crossref_primary_10_1515_BC_2004_102 crossref_primary_10_1097_00001756_200404090_00017 crossref_primary_10_1371_journal_pone_0025667 crossref_primary_10_1016_j_febslet_2005_06_044 crossref_primary_10_1093_nar_gkw731 crossref_primary_10_1002_cbf_3181 crossref_primary_10_1007_s13277_010_0128_3 crossref_primary_10_1002_mrd_20719 crossref_primary_10_1097_WNR_0b013e3282f0b542 crossref_primary_10_1095_biolreprod_104_031740 crossref_primary_10_1002_humu_24149 |
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SubjectTerms | Animals Blotting, Western Brain - cytology Brain Chemistry Carrier Proteins - genetics Carrier Proteins - metabolism Cell Cycle Proteins Cell Differentiation - physiology Cells, Cultured Cercopithecus aethiops Fetus Gene Expression Humans Immunohistochemistry Male Mice Neoplasm Proteins - genetics Neoplasm Proteins - metabolism Neurons - metabolism Repressor Proteins - genetics Repressor Proteins - metabolism Reverse Transcriptase Polymerase Chain Reaction - methods RNA, Messenger - biosynthesis RNA-Binding Proteins - genetics RNA-Binding Proteins - metabolism Serine-Arginine Splicing Factors Stem Cells - metabolism Testis - metabolism Transfection |
Title | Neural expression and regulation of NSSR1 proteins |
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