» Articles » PMID: 17967047

Alternative Splicing Events Identified in Human Embryonic Stem Cells and Neural Progenitors

Overview
Specialty Biology
Date 2007 Oct 31
PMID 17967047
Citations 75
Authors
Affiliations
Soon will be listed here.
Abstract

Human embryonic stem cells (hESCs) and neural progenitor (NP) cells are excellent models for recapitulating early neuronal development in vitro, and are key to establishing strategies for the treatment of degenerative disorders. While much effort had been undertaken to analyze transcriptional and epigenetic differences during the transition of hESC to NP, very little work has been performed to understand post-transcriptional changes during neuronal differentiation. Alternative RNA splicing (AS), a major form of post-transcriptional gene regulation, is important in mammalian development and neuronal function. Human ESC, hESC-derived NP, and human central nervous system stem cells were compared using Affymetrix exon arrays. We introduced an outlier detection approach, REAP (Regression-based Exon Array Protocol), to identify 1,737 internal exons that are predicted to undergo AS in NP compared to hESC. Experimental validation of REAP-predicted AS events indicated a threshold-dependent sensitivity ranging from 56% to 69%, at a specificity of 77% to 96%. REAP predictions significantly overlapped sets of alternative events identified using expressed sequence tags and evolutionarily conserved AS events. Our results also reveal that focusing on differentially expressed genes between hESC and NP will overlook 14% of potential AS genes. In addition, we found that REAP predictions are enriched in genes encoding serine/threonine kinase and helicase activities. An example is a REAP-predicted alternative exon in the SLK (serine/threonine kinase 2) gene that is differentially included in hESC, but skipped in NP as well as in other differentiated tissues. Lastly, comparative sequence analysis revealed conserved intronic cis-regulatory elements such as the FOX1/2 binding site GCAUG as being proximal to candidate AS exons, suggesting that FOX1/2 may participate in the regulation of AS in NP and hESC. In summary, a new methodology for exon array analysis was introduced, leading to new insights into the complexity of AS in human embryonic stem cells and their transition to neural stem cells.

Citing Articles

Missense mutations of the ephrin receptor EPHA1 associated with Alzheimer's disease disrupt receptor signaling functions.

Matsumoto M, Gomez-Soler M, Lombardi S, Lechtenberg B, Pasquale E J Biol Chem. 2024; 301(2):108099.

PMID: 39706267 PMC: 11773478. DOI: 10.1016/j.jbc.2024.108099.


Alternative splicing in EMT and TGF-β signaling during cancer progression.

Zhang Y, Stuelten C Semin Cancer Biol. 2024; 101:1-11.

PMID: 38614376 PMC: 11180579. DOI: 10.1016/j.semcancer.2024.04.001.


Interrogations of single-cell RNA splicing landscapes with SCASL define new cell identities with physiological relevance.

Xiang X, He Y, Zhang Z, Yang X Nat Commun. 2024; 15(1):2164.

PMID: 38461306 PMC: 10925056. DOI: 10.1038/s41467-024-46480-9.


An impaired splicing program underlies differentiation defects in hSOD1 neural progenitor cells.

Verdile V, Riccioni V, Guerra M, Ferrante G, Sette C, Valle C Cell Mol Life Sci. 2023; 80(8):236.

PMID: 37524863 PMC: 11072603. DOI: 10.1007/s00018-023-04893-7.


Building in vitro models of the brain to understand the role of in Alzheimer's disease.

Pinals R, Tsai L Life Sci Alliance. 2022; 5(11).

PMID: 36167428 PMC: 9515460. DOI: 10.26508/lsa.202201542.


References
1.
Faustino N, Cooper T . Identification of putative new splicing targets for ETR-3 using sequences identified by systematic evolution of ligands by exponential enrichment. Mol Cell Biol. 2005; 25(3):879-87. PMC: 544011. DOI: 10.1128/MCB.25.3.879-887.2005. View

2.
Johnson J, Castle J, Garrett-Engele P, Kan Z, Loerch P, Armour C . Genome-wide survey of human alternative pre-mRNA splicing with exon junction microarrays. Science. 2003; 302(5653):2141-4. DOI: 10.1126/science.1090100. View

3.
Nunes M, Roy N, Keyoung H, Goodman R, McKhann 2nd G, Jiang L . Identification and isolation of multipotential neural progenitor cells from the subcortical white matter of the adult human brain. Nat Med. 2003; 9(4):439-47. DOI: 10.1038/nm837. View

4.
Taylor H, Minger S . Regenerative medicine in Parkinson's disease: generation of mesencephalic dopaminergic cells from embryonic stem cells. Curr Opin Biotechnol. 2005; 16(5):487-92. DOI: 10.1016/j.copbio.2005.08.005. View

5.
Grabowski P, Black D . Alternative RNA splicing in the nervous system. Prog Neurobiol. 2001; 65(3):289-308. DOI: 10.1016/s0301-0082(01)00007-7. View