RRC ID 81392
著者 Hishida T, Yamamoto M, Hishida-Nozaki Y, Shao C, Huang L, Wang C, Shojima K, Xue Y, Hang Y, Shokhirev M, Memczak S, Sahu SK, Hatanaka F, Ros RR, Maxwell MB, Chavez J, Shao Y, Liao HK, Martinez-Redondo P, Guillen-Guillen I, Hernandez-Benitez R, Esteban CR, Qu J, Holmes MC, Yi F, Hickey RD, Garcia PG, Delicado EN, Castells A, Campistol JM, Yu Y, Hargreaves DC, Asai A, Reddy P, Liu GH, Izpisua Belmonte JC.
タイトル In vivo partial cellular reprogramming enhances liver plasticity and regeneration.
ジャーナル Cell Rep
Abstract Mammals have limited regenerative capacity, whereas some vertebrates, like fish and salamanders, are able to regenerate their organs efficiently. The regeneration in these species depends on cell dedifferentiation followed by proliferation. We generate a mouse model that enables the inducible expression of the four Yamanaka factors (Oct-3/4, Sox2, Klf4, and c-Myc, or 4F) specifically in hepatocytes. Transient in vivo 4F expression induces partial reprogramming of adult hepatocytes to a progenitor state and concomitantly increases cell proliferation. This is indicated by reduced expression of differentiated hepatic-lineage markers, an increase in markers of proliferation and chromatin modifiers, global changes in DNA accessibility, and an acquisition of liver stem and progenitor cell markers. Functionally, short-term expression of 4F enhances liver regenerative capacity through topoisomerase2-mediated partial reprogramming. Our results reveal that liver-specific 4F expression in vivo induces cellular plasticity and counteracts liver failure, suggesting that partial reprogramming may represent an avenue for enhancing tissue regeneration.
巻・号 39(4)
ページ 110730
公開日 2022-4-26
DOI 10.1016/j.celrep.2022.110730
PII S2211-1247(22)00491-0
PMID 35476977
PMC PMC9807246
MeSH Animals Cell Dedifferentiation Cellular Reprogramming* Hepatocytes / metabolism Liver* / metabolism Liver Regeneration Mammals Mice
IF 8.109
リソース情報
遺伝子材料 pCAG-HIVgp (RDB04394) pCMV-VSV-G-RSV-Rev (RDB04393)