TY - JOUR
T1 - Autophagy driven by a master regulator of hematopoiesis
AU - Kang, Yoon A.
AU - Sanalkumar, Rajendran
AU - O'geen, Henriette
AU - Linnemann, Amelia K.
AU - Chang, Chan Jung
AU - Bouhassira, Eric E.
AU - Farnham, Peggy J.
AU - Keles, Sunduz
AU - Bresnick, Emery H.
PY - 2012/1
Y1 - 2012/1
N2 - Developmental and homeostatic remodeling of cellular organelles is mediated by a complex process termed autophagy. The cohort of proteins that constitute the autophagy machinery functions in a multistep biochemical pathway. Though components of the autophagy machinery are broadly expressed, autophagy can occur in specialized cellular contexts, and mechanisms underlying cell-type-specific autophagy are poorly understood. We demonstrate that the master regulator of hematopoiesis, GATA-1, directly activates transcription of genes encoding the essential autophagy component microtubule-associated protein 1 light chain 3B (LC3B) and its homologs (MAP1LC3A, GABARAP, GABARAPL1, and GATE-16). In addition, GATA-1 directly activates genes involved in the biogenesis/function of lysosomes, which mediate autophagic protein turnover. We demonstrate that GATA-1 utilizes the forkhead protein FoxO3 to activate select autophagy genes. GATA-1-dependent LC3B induction is tightly coupled to accumulation of the active form of LC3B and autophagosomes, which mediate mitochondrial clearance as a critical step in erythropoiesis. These results illustrate a novel mechanism by which a master regulator of development establishes a genetic network to instigate cell-type-specific autophagy.
AB - Developmental and homeostatic remodeling of cellular organelles is mediated by a complex process termed autophagy. The cohort of proteins that constitute the autophagy machinery functions in a multistep biochemical pathway. Though components of the autophagy machinery are broadly expressed, autophagy can occur in specialized cellular contexts, and mechanisms underlying cell-type-specific autophagy are poorly understood. We demonstrate that the master regulator of hematopoiesis, GATA-1, directly activates transcription of genes encoding the essential autophagy component microtubule-associated protein 1 light chain 3B (LC3B) and its homologs (MAP1LC3A, GABARAP, GABARAPL1, and GATE-16). In addition, GATA-1 directly activates genes involved in the biogenesis/function of lysosomes, which mediate autophagic protein turnover. We demonstrate that GATA-1 utilizes the forkhead protein FoxO3 to activate select autophagy genes. GATA-1-dependent LC3B induction is tightly coupled to accumulation of the active form of LC3B and autophagosomes, which mediate mitochondrial clearance as a critical step in erythropoiesis. These results illustrate a novel mechanism by which a master regulator of development establishes a genetic network to instigate cell-type-specific autophagy.
UR - http://www.scopus.com/inward/record.url?scp=84863011357&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=84863011357&partnerID=8YFLogxK
U2 - 10.1128/MCB.06166-11
DO - 10.1128/MCB.06166-11
M3 - Article
C2 - 22025678
AN - SCOPUS:84863011357
SN - 0270-7306
VL - 32
SP - 226
EP - 239
JO - Molecular and Cellular Biology
JF - Molecular and Cellular Biology
IS - 1
ER -