An in situ hybridization (ISH) protocol that uses short antisense oligonucleotides to detect alternative pre-mRNA splicing patterns in mouse brain sections is described.
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Method Article
An in situ hybridization (ISH) protocol that uses short antisense oligonucleotides to detect alternative pre-mRNA splicing patterns in mouse brain sections is described.
Alternative splicing (AS) occurs in more than 90% of human genes. The expression pattern of an alternatively spliced exon is often regulated in a cell type-specific fashion. AS expression patterns are typically analyzed by RT-PCR and RNA-seq using RNA samples isolated from a population of cells. In situ examination of AS expression patterns for a particular biological structure can be carried out by RNA in situ hybridization (ISH) using exon-specific probes. However, this particular use of ISH has been limited because alternative exons are generally too short to design exon-specific probes. In this report, the use of BaseScope, a recently developed technology that employs short antisense oligonucleotides in RNA ISH, is described to analyze AS expression patterns in mouse brain sections. Exon 23a of neurofibromatosis type 1 (Nf1) is used as an example to illustrate that short exon-exon junction probes exhibit robust hybridization signals with high specificity in RNA ISH analysis on mouse brain sections. More importantly, signals detected with exon inclusion- and skipping-specific probes can be used to reliably calculate the percent spliced in values of Nf1 exon 23a expression in different anatomical areas of a mouse brain. The experimental protocol and calculation method for AS analysis are presented. The results indicate that BaseScope provides a powerful new tool to assess AS expression patterns in situ.
Alternative splicing (AS) is a common process that occurs during pre-mRNA maturation. In this process, an exon can be differentially included in mature mRNA. Thus, through AS, one gene can generate many mRNAs that code for different protein products. It is estimated that 92–94% of human genes undergo alternative splicing1,2. Abnormal alternative splicing patterns resulted from genetic mutations have been linked to a large number of diseases, including amyotrophic lateral sclerosis, myotonic dystrophy, and cancer3,4. It is thus crucial to investig....
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All of the experiments described here that involve mice have been approved by the Case Western Reserve University Institutional Animal Care and Use Committee. The title of the protocol 2016-0068 (PI: Hua Lou) is “Role of alternative pre-mRNA splicing in vertebrate development”.
NOTE: Information of all of the equipment, reagents and supplies used in this protocol is included in Table of Materials.
1. Prepare Formalin Fixed Paraffin Embedded (FFPE) Sections
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BaseScope ISH was carried out using three mouse strains: CD1 wild type mice, C57BL/6J wild type mice, and Nf123aIN/23aIN mutant mice in the C57BL/6J background, in which exon 23a is included in all cell types as a result of engineered splice site mutations14,15.
As a first step, the ISH assay system was tested using company provided reagents: slides t.......
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This communication reports the use of BaseScope RNA ISH to examine AS expression patterns in mouse brain sections. It is demonstrated that anti-sense exon-exon junction probes shorter than 50 nucleotides can target exon inclusion and skipping isoforms robustly and specifically. Furthermore, the resulting signals can be used to calculate PSI of an alternative exon.
A few variations were tested in the procedure. For example, frozen tissue sections generated by cryostat sectioning were tested and.......
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The authors have nothing to disclose.
This work was supported by the American Heart Association [Grant-in-Aid 0365274B to H.L.], National Cancer Institute [GI SPORE P50CA150964 to Z.W.], National Institutes of Health [Office of Research Infrastructure Shared Instrumentation Grant S10RR031845 to the Light Microscopy Imaging Facility at Case Western Reserve University], and China Scholarship Council [to X.G.].
The authors thank Richard Lee in the Light Microscopy Imaging Core for his help with slide scanning.
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| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| Equipment | |||
| Hybridization Oven | Advanced Cell Diagnostics | 241000ACD | |
| Humidity Control Tray (with lid) | Advanced Cell Diagnostics | 310012 | |
| Stain Rack | Advanced Cell Diagnostics | 310017 | |
| Hot plate | Fisher Scientific | 1160049SH | |
| Imperial III General Purpose Incubator | Lab-Line | 302 | |
| Slide Scanner | Leica | SCN400 | |
| Name | Company | Catalog Number | Comments |
| Reagents | |||
| Pretreatment kit | Advanced Cell Diagnostics | 322381 | |
| Hydrogen Peroxide | Advanced Cell Diagnostics | 2000899 | |
| Protease III* | Advanced Cell Diagnostics | 2000901 | |
| 10x Target Retrieval | Advanced Cell Diagnostics | 2002555 | |
| BaseScope Detection Reagent Kit | Advanced Cell Diagnostics | 332910 | |
| AMP 0 | Advanced Cell Diagnostics | 2001814 | |
| AMP 1 | Advanced Cell Diagnostics | 2001815 | |
| AMP 2 | Advanced Cell Diagnostics | 2001816 | |
| AMP 3 | Advanced Cell Diagnostics | 2001817 | |
| AMP 4 | Advanced Cell Diagnostics | 16229B | |
| AMP 5-RED | Advanced Cell Diagnostics | 16229C | |
| AMP 6-RED | Advanced Cell Diagnostics | 2001820 | |
| Fast RED-A | Advanced Cell Diagnostics | 2001821 | |
| Fast RED-B | Advanced Cell Diagnostics | 16230F | |
| 50x Wash Buffer | Advanced Cell Diagnostics | 310091 | |
| Negative Control Probe- Mouse DapB-1ZZ | Advanced Cell Diagnostics | 701021 | |
| Positive Control Probe- Mouse (Mm)-PPIB-1ZZ | Advanced Cell Diagnostics | 701081 | |
| Control slide-mouse 3T3 cell pellet | Advanced Cell Diagnostics | 310045 | |
| Name | Company | Catalog Number | Comments |
| Other supplies | |||
| Humidifying Paper | Advanced Cell Diagnostics | 310015 | |
| Washing Rack | American Master Tech Scientific | 9837976 | |
| Washing Dishes | American Master Tech Scientific | LWS20WH | |
| Hydrophobic Barrier Pen | Vector Laboratory | H-4000 | |
| Glass Slides | Fisher Scientific | 12-550-15 | |
| Cover Glass, 24 mm x 50 mm | Fisher Scientific | 12--545-F | |
| Name | Company | Catalog Number | Comments |
| Chemicals | |||
| Ammonium hydroxide | Fisher Scientific | 002689 | |
| 100% ethanol (EtOH) | Decon Labs | 2805 | |
| formalde solution | Fisher Scientific | SF94-4 | |
| Hematoxylin I | American Master Tech Scientific | 17012359 | |
| Mounting Medium | Vector Labs | H-5000 | |
| Xylene | Fisher Scientific | 173942 |
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