Aberrant ERK signaling in astrocytes impairs learning and memory in RASopathy-associated BRAF mutant mouse models

  • Kang, Minkyung; 
  • Choi, Jihye; 
  • Han, Jeongho; 
  • Araki, Toshiyuki; 
  • Kim, Soo-Whee; 
  • ... An, Joon-Yong; 
  • 외 24명
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초록

RAS/MAPK pathway mutations often induce RASopathies with overlapping features, such as craniofacial dysmorphology, cardiovascular defects, dermatologic abnormalities, and intellectual disabilities. Although B-Raf proto-oncogene (BRAF) mutations are associated with cardio-facio-cutaneous (CFC) syndrome and Noonan syndrome, it remains unclear how these mutations impair cognition. Here, we investigated the underlying neural mechanisms using several mouse models harboring a gain-of-function BRAF mutation (K499E) discovered in RASopathy patients. We found expressing BRAF K499E (KE) in neural stem cells under the control of a Nestin-Cre promoter (Nestin;BRAFKE/+) induced hippocampal memory deficits, but expressing it in excitatory or inhibitory neurons did not. BRAF KE expression in neural stem cells led to aberrant reactive astrogliosis, increased astrocytic Ca2+ fluctuations, and reduced hippocampal long-term depression (LTD) in mice. Consistently, 3D human cortical spheroids expressing BRAF KE also showed reactive astrogliosis. Astrocyte-specific adeno-associated virus–BRAF KE (AAV-BRAF KE) delivery induced memory deficits and reactive astrogliosis and increased astrocytic Ca2+ fluctuations. Notably, reducing extracellular signal-regulated kinase (ERK) activity in astrocytes rescued the memory deficits and altered astrocytic Ca2+ activity of Nestin;BRAFKE/+ mice. Furthermore, reducing astrocyte Ca2+ activity rescued the spatial memory impairments of BRAF KE–expressing mice. Our results demonstrate that ERK hyperactivity contributes to astrocyte dysfunction associated with Ca2+ dysregulation, leading to the memory deficits of BRAF-associated RASopathies. © 2025, Kang et al.

키워드

Calcium Ion; Mitogen Activated Protein Kinase; Nestin; Braf Protein, Mouse; Mas1 Protein, Human; Proto-oncogene Mas; Proto-oncogene Proteins B-raf; Adeno Associated Virus Vector; B Raf Kinase; Calcium Ion; Cre Recombinase; Mitogen Activated Protein Kinase; Nestin; Braf Protein, Mouse; Mas Receptor; Mas1 Protein, Human; Animal Cell; Animal Experiment; Animal Model; Animal Tissue; Article; Astrocyte; Astrocytosis; Controlled Study; Enzyme Activity; Excitatory Postsynaptic Potential; Female; Gain Of Function Mutation; Hippocampus; Human; Human Cell; Inhibitory Postsynaptic Potential; Learning Disorder; Long Term Depression; Male; Mapk Signaling; Memory Disorder; Mouse; Mouse Model; Mouse Mutant; Neural Stem Cell; Nonhuman; Promoter Region; Amino Acid Substitution; Animal; Congenital Heart Malformation; Disease Model; Ectodermal Dysplasia; Enzymology; Facies; Failure To Thrive; Genetics; Learning; Metabolism; Missense Mutation; Pathology; Transgenic Mouse; Amino Acid Substitution; Animals; Astrocytes; Cardiofaciocutaneous Syndrome; Disease Models, Animal; Ectodermal Dysplasia; Facies; Failure To Thrive; Gain Of Function Mutation; Heart Defects, Congenital; Hippocampus; Humans; Learning; Map Kinase Signaling System; Memory Disorders; Mice; Mice, Transgenic; Mutation, Missense; Neural Stem Cells; Proto-oncogene Mas; Proto-oncogene Proteins B-raf; STEM-CELLS; B-RAF; DEFICITS; MUTATIONS; MECHANISM; PATHWAY; NESTIN; NF1; DIAGNOSIS; KNOCKOUT
제목
Aberrant ERK signaling in astrocytes impairs learning and memory in RASopathy-associated BRAF mutant mouse models
저자
Kang, Minkyung; Choi, Jihye; Han, Jeongho; Araki, Toshiyuki; Kim, Soo-Whee; Ryu, Hyun-Hee; Kim, Min-Gyun; Kim, Seoyeon; Jang, Hanbyul; Kim, Sun Yong; Hwang, Kyoung-Doo; Kim, Soobin; Yoo, Myeongjong; Lee, Jaegeon; Kim, Kitae; Park, Pojeong; Choi, Ja Eun; Han, Dae Hee; Kim, Yujin; Kim, Jeongyeon; Chang, Sunghoe; Kaang, Bong-Kiun; Ko, Jung Min; Cheon, Keun-Ah; An, Joon-Yong; Kim, Sang Jeong; Park, Hyungju; Neel, Benjamin G.; Kim, Chul Hoon; Lee, Yong-Seok
DOI
10.1172/JCI176631
발행일
2025-04-15
유형
Article
저널명
Journal of Clinical Investigation
권
135
호
8