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xMD-miRNA-seq to generate near in vivo miRNA expression estimates in colon epithelial cells.

Avi Z Rosenberg | Carrie Wright | Karen Fox-Talbot | Anandita Rajpurohit | Courtney Williams | Corey Porter | Olga Kovbasnjuk | Matthew N McCall | Joo Heon Shin | Marc K Halushka
Scientific reports | 2018

Accurate, RNA-seq based, microRNA (miRNA) expression estimates from primary cells have recently been described. However, this in vitro data is mainly obtained from cell culture, which is known to alter cell maturity/differentiation status, significantly changing miRNA levels. What is needed is a robust method to obtain in vivo miRNA expression values directly from cells. We introduce expression microdissection miRNA small RNA sequencing (xMD-miRNA-seq), a method to isolate cells directly from formalin fixed paraffin-embedded (FFPE) tissues. xMD-miRNA-seq is a low-cost, high-throughput, immunohistochemistry-based method to capture any cell type of interest. As a proof-of-concept, we isolated colon epithelial cells from two specimens and performed low-input small RNA-seq. We generated up to 600,000 miRNA reads from the samples. Isolated epithelial cells, had abundant epithelial-enriched miRNA expression (miR-192; miR-194; miR-200b; miR-200c; miR-215; miR-375) and overall similar miRNA expression patterns to other epithelial cell populations (colonic enteroids and flow-isolated colon epithelium). xMD-derived epithelial cells were generally not contaminated by other adjacent cells of the colon as noted by t-SNE analysis. xMD-miRNA-seq allows for simple, economical, and efficient identification of cell-specific miRNA expression estimates. Further development will enhance rapid identification of cell-specific miRNA expression estimates in health and disease for nearly any cell type using archival FFPE material.

Pubmed ID: 29955168

Research resources used in this publication

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Antibodies used in this publication

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Associated grants

  • Agency: NHGRI NIH HHS, United States
    Id: R00 HG006853
  • Agency: NCATS NIH HHS, United States
    Id: UL1 TR002001
  • Agency: NCATS NIH HHS, United States
    Id: UL1 TR000042
  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM130564
  • Agency: American Heart Association (American Heart Association, Inc.), International
    Id: 17GRNT33670405
  • Agency: NHLBI NIH HHS, United States
    Id: R01 HL137811

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NCBI BioProject (tool)

RRID:SCR_004801

Database of biological data related to a single initiative, originating from a single organization or from a consortium. A BioProject record provides users a single place to find links to the diverse data types generated for that project. It is a searchable collection of complete and incomplete (in-progress) large-scale sequencing, assembly, annotation, and mapping projects for cellular organisms. Submissions are supported by a web-based Submission Portal. The database facilitates organization and classification of project data submitted to NCBI, EBI and DDBJ databases that captures descriptive information about research projects that result in high volume submissions to archival databases, ties together related data across multiple archives and serves as a central portal by which to inform users of data availability. BioProject records link to corresponding data stored in archival repositories. The BioProject resource is a redesigned, expanded, replacement of the NCBI Genome Project resource. The redesign adds tracking of several data elements including more precise information about a project''''s scope, material, and objectives. Genome Project identifiers are retained in the BioProject as the ID value for a record, and an Accession number has been added. Database content is exchanged with other members of the International Nucleotide Sequence Database Collaboration (INSDC). BioProject is accessible via FTP.

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RUVSeq (tool)

RRID:SCR_006263

Software package that implements the remove unwanted variation (RUV) methods for the normalization of RNA-Seq read counts between samples.

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cutadapt (tool)

RRID:SCR_011841

Software tool that removes adapter sequences from DNA sequencing reads.

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