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  Human Skeletal Muscle Myoblasts (HSMM)

Overall DesignWe selected primary human myoblasts as a model system of cell differentiation to investigate whether ordering cells by progress revealed new regulators of the process. We sequenced RNA-Seq libraries from each of several hundred cells taken over a time-course of serum-induced differentiation.
SummarySingle-cell expression profiling by RNA-Seq promises to exploit cell-to-cell variation in gene expression to reveal regulatory circuitry governing cell differentiation and other biological processes. Here, we describe Monocle, a novel unsupervised algorithm for ordering cells by progress through differentiation that dramatically increases temporal resolution of expression measurements. This reordering unmasks switch-like changes in expression of key regulatory factors, reveals sequentially organized waves of gene regulation, and exposes regulators of cell differentiation. A functional screen confirms that a number of these regulators dramatically alter the efficiency of myoblast differentiation, demonstrating that single-cell expression analysis with Monocle can uncover new regulators even in well-studied systems.
Dataset viewGSE52529
PMID24658644

Samples in Human Skeletal Muscle Myoblasts (HSMM)

Displaying 371-372 of 372 results.
SeriesSampleInstrumentOrganismTitleCell Source
GSE52529GSM1269119Illumina HiSeq 2500Homo sapiensCell T24_CT_F04Human Skeletal Muscle Myoblasts (HSMM)
GSE52529GSM1269120Illumina HiSeq 2500Homo sapiensCell T24_CT_F05Human Skeletal Muscle Myoblasts (HSMM)

Gene rank in Human Skeletal Muscle Myoblasts (HSMM)

Displaying 131-140 of 19478 results.
Rank orderGene SymbolEnsembl ID
131USMG5ENSG00000173915
132YWHAEENSG00000108953
133UBA52ENSG00000221983
134RPL24ENSG00000114391
135PPP1CBENSG00000213639
136PRDX1ENSG00000117450
137MT-ND5ENSG00000198786
138SETENSG00000119335
139H3F3BENSG00000132475
140RPL14ENSG00000188846