Cell stem cell

The Transcriptionally Permissive Chromatin State of Embryonic Stem Cells Is Acutely Tuned to Translational Output.

Cell stem cell

Bulut-Karslioglu A, Macrae TA, Oses-Prieto JA, Covarrubias S, Percharde M, Ku G, Diaz A, McManus MT, Burlingame AL, Ramalho-Santos M

The Transcriptionally Permissive Chromatin State of Embryonic Stem Cells Is Acutely Tuned to Translational Output.

Cell stem cell

Bulut-Karslioglu A, Macrae TA, Oses-Prieto JA, Covarrubias S, Percharde M, Ku G, Diaz A, McManus MT, Burlingame AL, Ramalho-Santos M

The Transcriptionally Permissive Chromatin State of Embryonic Stem Cells Is Acutely Tuned to Translational Output.

Cell stem cell

Bulut-Karslioglu A, Macrae TA, Oses-Prieto JA, Covarrubias S, Percharde M, Ku G, Diaz A, McManus MT, Burlingame AL, Ramalho-Santos M

Adult Neurogenesis Is Sustained by Symmetric Self-Renewal and Differentiation.

Cell stem cell

Obernier K, Cebrian-Silla A, Thomson M, Parraguez JI, Anderson R, Guinto C, Rodas Rodriguez J, Garcia-Verdugo JM, Alvarez-Buylla A

mTORC1 Activation during Repeated Regeneration Impairs Somatic Stem Cell Maintenance.

Cell stem cell

Haller S, Kapuria S, Riley RR, O'Leary MN, Schreiber KH, Andersen JK, Melov S, Que J, Rando TA, Rock J, Kennedy BK, Rodgers JT, Jasper H

mTORC1 Activation during Repeated Regeneration Impairs Somatic Stem Cell Maintenance.

Cell stem cell

Haller S, Kapuria S, Riley RR, O'Leary MN, Schreiber KH, Andersen JK, Melov S, Que J, Rando TA, Rock J, Kennedy BK, Rodgers JT, Jasper H

A Modular Platform for Differentiation of Human PSCs into All Major Ectodermal Lineages.

Cell stem cell

Tchieu J, Zimmer B, Fattahi F, Amin S, Zeltner N, Chen S, Studer L

Recruited Monocytes and Type 2 Immunity Promote Lung Regeneration following Pneumonectomy.

Cell stem cell

Lechner AJ, Driver IH, Lee J, Conroy CM, Nagle A, Locksley RM, Rock JR

Recruited Monocytes and Type 2 Immunity Promote Lung Regeneration following Pneumonectomy.

Cell stem cell

Lechner AJ, Driver IH, Lee J, Conroy CM, Nagle A, Locksley RM, Rock JR

An FAK-YAP-mTOR Signaling Axis Regulates Stem Cell-Based Tissue Renewal in Mice.

Cell stem cell

Hu JK, Du W, Shelton SJ, Oldham MC, DiPersio CM, Klein OD

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