首页 | 本学科首页   官方微博 | 高级检索  
   检索      


Bis deficiency results in early lethality with metabolic deterioration and involution of spleen and thymus
Authors:Youn Dong-Ye  Lee Dong-Hyoung  Lim Mi-Hyun  Yoon Jung-Sook  Lim Ji Hee  Jung Seung Eun  Yeum Chung Eun  Park Cheol Whee  Youn Ho-Joong  Lee Jae-Seon  Lee Seong-Beom  Ikawa Masahito  Okabe Masaru  Tsujimoto Yoshihide  Lee Jeong-Hwa
Institution:Department of Biochemistry, Catholic University of Korea, Korea.
Abstract:Bcl-2 interacting cell death suppressor (Bis), also known as Bag3 or CAIR-1, is involved in antistress and antiapoptotic pathways. In addition to Bcl-2, Bis binds to several proteins, suggesting it has diverse functions in normal and pathological conditions. To better define the physiological function of Bis in vivo, we developed bis-deficient mice with a cre-loxP system. Targeted disruption of exon 4 of the bis gene was demonstrated by Southern blotting and PCR, and Western blotting showed that no intact or truncated Bis protein was synthesized in bis(-/-) mice. While heterozygotes were fertile and appeared normal, Bis-deficient mice showed growth retardation and died by 3 wk after birth. The relative weight of the thymus and spleen was reduced and the total numbers of white blood cells, splenocytes, and thymocytes were significantly reduced compared with wild-type littermates. Serum profiles indicated significant hypoglycemia as well as decrease in triglyceride and cholesterol levels. Expression profiles of metabolic genes indicated that gluconeogenesis and beta-oxidation are activated in the liver of bis(-/-) mice. This activation, as well as a decrease in peripheral fat and an induction of fatty liver, appears to be an adaptive response to hypoglycemia. Our study reveals that the absence of Bis has considerable influences on postnatal growth and survival, possibly due to a nutritional impairment.
Keywords:
本文献已被 PubMed 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号