Method Article

Profiling Individual Human Embryonic Stem Cells by Quantitative RT-PCR

DOI:

10.3791/51408

May 29th, 2014

In This Article

Summary

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Single cell gene expression assay is needed for understanding stem cell heterogeneities.

Abstract

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Heterogeneity of stem cell population hampers detailed understanding of stem cell biology, such as their differentiation propensity toward different lineages. A single cell transcriptome assay can be a new approach for dissecting individual variation. We have developed the single cell qRT-PCR method, and confirmed that this method works well in several gene expression profiles. In single cell level, each human embryonic stem cell, sorted by OCT4::EGFP positive cells, has high expression in OCT4, but a different level of NANOG expression. Our single cell gene expression assay should be useful to interrogate population heterogeneities.

Introduction

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Most higher eukaryote populations are heterogeneous thus with analysis of pooled population, it is often difficult to interpret their cellular features. Individual cells within a population may be subtly different, and these differences can have important consequences for the property and function of the entire population1,2. Especially, human embryonic stem cells (hESCs) are known to be heterogeneous, which causes different levels of pluripotency and diverse potentials to lineage specification in delicately distinctive ways3,4. For example, different cell surface antigens can be used to categorize undi....

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Protocol

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1. Preparation of a 96-well Plate

  1. Mix 1 μl of Single Cell DNase1 to 9 μl Single Cell Lysis Solution.
  2. Put the 10 μl mixed solution in each well of 96-well PCR plate.

2. Detaching hESCs for FACS Purification

  1. Detach OCT4::EGFP ES cell line from the 60 mm dish with 1 ml Accutase for 20 min, at 37 °C, which were neutralized with human ES media.
  2. Prepare cell population in 1 ml FACS buffer and adjust the cell to 1 x 106 cells/ml.
  3. Pass the cell sample through a 35 μm cell strainer cap tube.
  4. Store the tube in ice before cell sorting.

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Results

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Efficient and robust single cell RNA amplification

To minimize the transcriptional variation among hESCs, we used OCT4::EGFP hESC clone for FACS purification. After sorting OCT4::EGFP positive cells into a 96-well plate, each cell is lysed in lysis buffer and converted poly(A)+ RNA to full length cDNA using SMA-T15 (GACATGTATCCGGATGTTTTTTTTTTTTTTTT) primer and anchoring with SMA-A (ACATGTATCCGGATGTGGG) by using SMART template switching technology. The excess oligonuc.......

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Discussion

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Single cell gene profiling could be a major tool to predict functionality of a single cell or an entire population. Due to technical limitation, whole gene profiling analysis has been restricted to population averages. Variations in gene expression patterns and levels between individual cells and the subpopulations have been proposed to cause erroneous interpretation. Such diverse cellular aspects can be found in hESCs and their heterogeneity causes subtly different ability for maintaining pluripotency and fate specifica.......

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Disclosures

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The authors have nothing to disclose.

Acknowledgements

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We would like to thank members of the Lee lab for valuable discussions on the manuscript. Work in the Lee lab was supported by grants from Robertson Investigator Award of New York Stem Cell Foundation and from Maryland Stem Cell Research Fund (TEDCO).

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Materials

List of materials used in this article
NameCompanyCatalog NumberComments
96-well PCR PlateUSA scientific1402-8900
Ambion Cell Lysis KitLife Technologies4458235
SMARTScribe Reverse TranscriptaseClonetech639536
ExoSAP-ITUSB78200
Platinum Taq DNA polymerase High FidelityInvitrogen11304
10 mM dNTP Mix, PCR GradeInvitrogen18427
SYBR Universal 2X Master MixKapa biosystemKR0389
AccutaseInnovative Cell TechS-1100-1
FACS buffer45 ml PBS, 5 ml a-MEM, 100 μl DNase, filter sterilized
35 μm cell strainer cap tubesBD Biosciences352235

References

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  1. Miyanari, Y., Torres-Padilla, M. E. Control of ground-state pluripotency by allelic regulation of Nanog. Nature. 483, 470-473 (2012).
  2. Leitch, H. G., et al. Embryonic germ cells from mice and rats exhibit properties consistent with a generi....

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Tags

Single Cell qRT PCRFluorescent Activated Cell SortingReverse TranscriptionPolymerase Chain ReactionOCT4 EGFP Positive CellsGene Expression ProfilingPopulation HeterogeneityStem Cell Markers

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