KAIST 생명과학과동창회
  • News & Events
  • News

News

Astrocytes eat connections to maintain plasticity in adult brains

 

by The Korea Advanced Institute of Science and Technology (KAIST) 

  

 

    Astrocytes eat connections to maintain plasticity in adult brains

A 3-D image showing our synapse phagocytosis reporter in mouse hippocampus

 

Developing brains constantly sprout new neuronal connections called synapses as they learn and remember. Important connectionsthe ones that are repeatedly introduced, such as how to avoid dangerare nurtured and reinforced, while connections deemed unnecessary are pruned away. Adult brains undergo similar pruning, but it was unclear how or why synapses in the adult brain get eliminated.                      

    

Now, a team of KAIST researchers has found the mechanism underlying plasticity and, potentially, neurological disorders in adult brains. They published their findings on December 23 in Nature.

    

"Our findings have profound implications for our understanding of how neural circuits change during learning and memory, as well as in diseases," said paper author Won-Suk Chung, an assistant professor in the Department of Biological Sciences at KAIST. "Changes in synapse number have strong association with the prevalence of various neurological disorders, such as autism spectrum disorder, schizophrenia, frontotemporal dementia, and several forms of seizures."

    

Gray matter in the brain contains microglia and astrocytes, two complementary cells that, among other things, support neurons and synapses. Microglial are a frontline immunity defense, responsible for eating pathogens and dead cells, and astrocytes are star-shaped cells that help structure the brain and maintain homeostasis by helping to control signaling between neurons. According to Professor Chung, it is generally thought that microglial eat synapses as part of its clean-up effort in a process known as phagocytosis.

    

"Using novel tools, we show that, for the first time, it is astrocytes and not microglia that constantly eliminate excessive and unnecessary adult excitatory synaptic connections in response to neuronal activity," Professor Chung said. "Our paper challenges the general consensus in this field that microglia are the primary synapse phagocytes that control synapse numbers in the brain."

  

Professor Chung and his team developed a molecular sensor to detect synapse elimination by glial cells and quantified how often and by which type of cell synapses were eliminated. They also deployed it in a mouse model without MEGF10, the gene that allows astrocytes to eliminate synapses. Adult animals with this defective astrocytic phagocytosis had unusually increased excitatory synapse numbers in the hippocampus. Through a collaboration with Dr. Hyungju Park at KBRI, they showed that these increased excitatory synapses are functionally impaired, which cause defective learning and memory formation in MEGF10 deleted animals.

 

"Through this process, we show that, at least in the adult hippocampal CA1 region, astrocytes are the major player in eliminating synapses, and this astrocytic function is essential for controlling synapse number and plasticity," Chung said.

    

Professor Chung noted that researchers are only beginning to understand how synapse elimination affects maturation and homeostasis in the brain. In his group's preliminary data in other brain regions, it appears that each region has different rates of synaptic elimination by astrocytes. They suspect a variety of internal and external factors are influencing how astrocytes modulate each regional circuit, and plan to elucidate these variables.

 

"Our long-term goal is understanding how astrocyte-mediated synapse turnover affects the initiation and progression of various neurological disorders," Professor Chung said. "It is intriguing to postulate that modulating astrocytic phagocytosis to restore synaptic connectivity may be a novel strategy in treating various brain disorders."

 

https://www.sciencedaily.com/releases/2020/12/201224090406.htm 

https://sciencecodex.com/astrocytes-eat-connections-maintain-plasticity-adult-brains-664004  

https://medicalxpress.com/news/2020-12-astrocytes-plasticity-adult-brains.html 

https://www.news-medical.net/news/20201224/Researchers-find-mechanism-underlying-plasticity-in-adult-brains.aspx 

https://www.miragenews.com/astrocytes-eat-connections-to-maintain-plasticity-in-adult-brains/ 

https://microbiozindia.com/health-news/researchers-locate-mechanism-underlying-plasticity-in-grownup-brains/


List of Articles
번호 제목 글쓴이 날짜 조회 수
132 임대식 교수, 한국과학상 대통령상 수상(2016. 12. 27) file 생명과학과 2016.12.28 13185
131 故 박태관 교수님의 명복을 빕니다. 과사무실 2011.04.11 13194
130 김은준 서연수 교수 우수교원 포상 과사무실 2004.02.13 13211
129 송세라, 박영균 학생 김보정 기초과학장학생으로 선발 과사무실 2006.09.12 13216
128 김근화 박사, 김승균 박사, 박상욱 박사, 2012년도 이공분야 '학문후속세대양성사업' 선정 과사무실 2013.01.02 13294
127 김세원 박사과정(강창원 교수 lab), Santorini Best Poster Award 수상! 과사무실 2011.06.17 13309
126 생명과학과 권창섭 연구교수... Trends in Genetics지 논문 게재 과사무실 2007.08.20 13311
125 최은비 박사과정 학생(김미영 교수 실험실) Oncogene 게재(2016.02) / Eun-Bee Choi, a Ph.D candidate in Prof. Mi-Young Kim’s lab published a paper in Oncogene (2016.02) 생명과학과 2016.03.07 13315
124 김학성 교수, Nature Communications 게재 (2014. 4) 과사무실 2014.04.24 13344
123 [경향신문] 뇌에서 시냅스 생성촉진 새 단백질 발견 -김은준교수팀 과사무실 2006.09.18 13345
122 김선창 교수 6월의 과학기술자 선정 과사무실 2003.09.08 13351
121 변시명 교수 기초과학 교과목 우수강의상 수상 1 과사무실 2004.03.17 13353
120 [동아일보] 위암 당뇨 ‘맞춤 치료’ 길 열린다…SNP 지도 첫 완성 과사무실 2006.12.14 13357
119 허원도 교수, Mai Khanh Nguyen 박사과정 학생 Nature Chemical Biology 논문 게재(2016.04) / Prof. Won Do Heo and Mai Khanh Nguyen Ph.D. published a paper in a Nature Chemical Biology(2016.04) 생명과학과 2016.04.12 13360
118 최광욱 교수, 2014 국내 바이오분야 연구성과 및 뉴스 Top5 선정 / Prof. Kwang-Wook Choi was selected as Top 5 news of 2014 in domestic bio research field 과사무실 2015.01.15 13379
117 고규영 교수님 Circulation Research 논문 COVER게재 과사무실 2007.03.21 13384
116 이준식 교수 IAFOST Fellow 선출 과사무실 2003.09.08 13394
115 최길주 교수, 정진길 박사 Nature Communications지 논문 게재 (2014. 8) 과사무실 2014.09.11 13447
114 이규리 학생(박태관 교수님 Lab), ICMAT 2009 & IUMRS-ICA 2009 Best Poster Award 수상 과사무실 2009.07.13 13455
113 [중앙일보] 생명과학과 박지혜 '로레알 여성생명과학상' 수상 과사무실 2006.06.22 13459
Board Pagination Prev 1 ... 11 12 13 14 15 16 17 18 19 20 ... 22 Next
/ 22