Conserved role for PCBP1 in altered RNA splicing in the hippocampus after chronic alcohol exposure
We previously discovered using transcriptomics that rats undergoing withdrawal after chronic ethanol exposure had increased expression of several genes encoding RNA splicing factors in the hippocampus. Here, we examined RNA splicing in the rat hippocampus during withdrawal from chronic ethanol expos...
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Published in | Molecular psychiatry Vol. 28; no. 10; pp. 4215 - 4224 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Nature Publishing Group UK
01.10.2023
Nature Publishing Group |
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Abstract | We previously discovered using transcriptomics that rats undergoing withdrawal after chronic ethanol exposure had increased expression of several genes encoding RNA splicing factors in the hippocampus. Here, we examined RNA splicing in the rat hippocampus during withdrawal from chronic ethanol exposure and in postmortem hippocampus of human subjects diagnosed with alcohol use disorder (AUD). We found that expression of the gene encoding the splicing factor, poly r(C) binding protein 1 (
PCBP1
), was elevated in the hippocampus of rats during withdrawal after chronic ethanol exposure and AUD subjects. We next analyzed the rat RNA-Seq data for differentially expressed (DE) exon junctions. One gene,
Hapln2
, had increased usage of a novel 3′ splice site in exon 4 during withdrawal. This splice site was conserved in human
HAPLN2
and was used more frequently in the hippocampus of AUD compared to control subjects. To establish a functional role for PCBP1 in
HAPLN2
splicing, we performed RNA immunoprecipitation (RIP) with a PCBP1 antibody in rat and human hippocampus, which showed enriched PCBP1 association near the
HAPLN2
exon 4 3′ splice site in the hippocampus of rats during ethanol withdrawal and AUD subjects. Our results indicate a conserved role for the splicing factor PCBP1 in aberrant splicing of
HAPLN2
after chronic ethanol exposure. As the
HAPLN2
gene encodes an extracellular matrix protein involved in nerve conduction velocity, use of this alternative splice site is predicted to result in loss of protein function that could negatively impact hippocampal function in AUD. |
---|---|
AbstractList | We previously discovered using transcriptomics that rats undergoing withdrawal after chronic ethanol exposure had increased expression of several genes encoding RNA splicing factors in the hippocampus. Here, we examined RNA splicing in the rat hippocampus during withdrawal from chronic ethanol exposure and in postmortem hippocampus of human subjects diagnosed with alcohol use disorder (AUD). We found that expression of the gene encoding the splicing factor, poly r(C) binding protein 1 (
PCBP1
), was elevated in the hippocampus of rats during withdrawal after chronic ethanol exposure and AUD subjects. We next analyzed the rat RNA-Seq data for differentially expressed (DE) exon junctions. One gene,
Hapln2
, had increased usage of a novel 3′ splice site in exon 4 during withdrawal. This splice site was conserved in human
HAPLN2
and was used more frequently in the hippocampus of AUD compared to control subjects. To establish a functional role for PCBP1 in
HAPLN2
splicing, we performed RNA immunoprecipitation (RIP) with a PCBP1 antibody in rat and human hippocampus, which showed enriched PCBP1 association near the
HAPLN2
exon 4 3′ splice site in the hippocampus of rats during ethanol withdrawal and AUD subjects. Our results indicate a conserved role for the splicing factor PCBP1 in aberrant splicing of
HAPLN2
after chronic ethanol exposure. As the
HAPLN2
gene encodes an extracellular matrix protein involved in nerve conduction velocity, use of this alternative splice site is predicted to result in loss of protein function that could negatively impact hippocampal function in AUD. We previously discovered using transcriptomics that rats undergoing withdrawal after chronic ethanol exposure had increased expression of several genes encoding RNA splicing factors in the hippocampus. Here, we examined RNA splicing in the rat hippocampus during withdrawal from chronic ethanol exposure and in postmortem hippocampus of human subjects diagnosed with alcohol use disorder (AUD). We found that expression of the gene encoding the splicing factor, poly r(C) binding protein 1 (PCBP1), was elevated in the hippocampus of rats during withdrawal after chronic ethanol exposure and AUD subjects. We next analyzed the rat RNA-Seq data for differentially expressed (DE) exon junctions. One gene, Hapln2, had increased usage of a novel 3' splice site in exon 4 during withdrawal. This splice site was conserved in human HAPLN2 and was used more frequently in the hippocampus of AUD compared to control subjects. To establish a functional role for PCBP1 in HAPLN2 splicing, we performed RNA immunoprecipitation (RIP) with a PCBP1 antibody in rat and human hippocampus, which showed enriched PCBP1 association near the HAPLN2 exon 4 3' splice site in the hippocampus of rats during ethanol withdrawal and AUD subjects. Our results indicate a conserved role for the splicing factor PCBP1 in aberrant splicing of HAPLN2 after chronic ethanol exposure. As the HAPLN2 gene encodes an extracellular matrix protein involved in nerve conduction velocity, use of this alternative splice site is predicted to result in loss of protein function that could negatively impact hippocampal function in AUD.We previously discovered using transcriptomics that rats undergoing withdrawal after chronic ethanol exposure had increased expression of several genes encoding RNA splicing factors in the hippocampus. Here, we examined RNA splicing in the rat hippocampus during withdrawal from chronic ethanol exposure and in postmortem hippocampus of human subjects diagnosed with alcohol use disorder (AUD). We found that expression of the gene encoding the splicing factor, poly r(C) binding protein 1 (PCBP1), was elevated in the hippocampus of rats during withdrawal after chronic ethanol exposure and AUD subjects. We next analyzed the rat RNA-Seq data for differentially expressed (DE) exon junctions. One gene, Hapln2, had increased usage of a novel 3' splice site in exon 4 during withdrawal. This splice site was conserved in human HAPLN2 and was used more frequently in the hippocampus of AUD compared to control subjects. To establish a functional role for PCBP1 in HAPLN2 splicing, we performed RNA immunoprecipitation (RIP) with a PCBP1 antibody in rat and human hippocampus, which showed enriched PCBP1 association near the HAPLN2 exon 4 3' splice site in the hippocampus of rats during ethanol withdrawal and AUD subjects. Our results indicate a conserved role for the splicing factor PCBP1 in aberrant splicing of HAPLN2 after chronic ethanol exposure. As the HAPLN2 gene encodes an extracellular matrix protein involved in nerve conduction velocity, use of this alternative splice site is predicted to result in loss of protein function that could negatively impact hippocampal function in AUD. We previously discovered using transcriptomics that rats undergoing withdrawal after chronic ethanol exposure had increased expression of several genes encoding RNA splicing factors in the hippocampus. Here, we examined RNA splicing in the rat hippocampus during withdrawal from chronic ethanol exposure and in postmortem hippocampus of human subjects diagnosed with alcohol use disorder (AUD). We found that expression of the gene encoding the splicing factor, poly r(C) binding protein 1 (PCBP1), was elevated in the hippocampus of rats during withdrawal after chronic ethanol exposure and AUD subjects. We next analyzed the rat RNA-Seq data for differentially expressed (DE) exon junctions. One gene, Hapln2, had increased usage of a novel 3' splice site in exon 4 during withdrawal. This splice site was conserved in human HAPLN2 and was used more frequently in the hippocampus of AUD compared to control subjects. To establish a functional role for PCBP1 in HAPLN2 splicing, we performed RNA immunoprecipitation (RIP) with a PCBP1 antibody in rat and human hippocampus, which showed enriched PCBP1 association near the HAPLN2 exon 4 3' splice site in the hippocampus of rats during ethanol withdrawal and AUD subjects. Our results indicate a conserved role for the splicing factor PCBP1 in aberrant splicing of HAPLN2 after chronic ethanol exposure. As the HAPLN2 gene encodes an extracellular matrix protein involved in nerve conduction velocity, use of this alternative splice site is predicted to result in loss of protein function that could negatively impact hippocampal function in AUD. |
Author | Lasek, Amy W. Maienschein-Cline, Mark Carvalho, Luana Pandey, Subhash C. Chen, Hu Glover, Elizabeth J. |
Author_xml | – sequence: 1 givenname: Luana orcidid: 0000-0001-6063-7140 surname: Carvalho fullname: Carvalho, Luana email: luana.martinsdecarvalho@vcuhealth.org organization: Center for Alcohol Research in Epigenetics, Department of Psychiatry, University of Illinois at Chicago, Department of Pharmacology and Toxicology, Virginia Commonwealth University – sequence: 2 givenname: Hu surname: Chen fullname: Chen, Hu organization: Center for Alcohol Research in Epigenetics, Department of Psychiatry, University of Illinois at Chicago – sequence: 3 givenname: Mark surname: Maienschein-Cline fullname: Maienschein-Cline, Mark organization: Center for Alcohol Research in Epigenetics, Department of Psychiatry, University of Illinois at Chicago, Research Informatics Core, University of Illinois at Chicago – sequence: 4 givenname: Elizabeth J. orcidid: 0000-0001-5037-7576 surname: Glover fullname: Glover, Elizabeth J. organization: Center for Alcohol Research in Epigenetics, Department of Psychiatry, University of Illinois at Chicago – sequence: 5 givenname: Subhash C. orcidid: 0000-0001-7139-8464 surname: Pandey fullname: Pandey, Subhash C. organization: Center for Alcohol Research in Epigenetics, Department of Psychiatry, University of Illinois at Chicago, Jesse Brown VA Medical Center – sequence: 6 givenname: Amy W. orcidid: 0000-0002-7099-2442 surname: Lasek fullname: Lasek, Amy W. organization: Center for Alcohol Research in Epigenetics, Department of Psychiatry, University of Illinois at Chicago, Department of Pharmacology and Toxicology, Virginia Commonwealth University |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/37537282$$D View this record in MEDLINE/PubMed |
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Title | Conserved role for PCBP1 in altered RNA splicing in the hippocampus after chronic alcohol exposure |
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