Engineering a dimeric caspase-9

Yang Chao;Eric N. Shiozaki;Srinivasa M. Srinivasula;Daniel J. Rigotti;Robert Fairman;一公 施

Princeton University;National Institutes of Health;Haverford College

发表时间:2005-6

期 刊:PLoS Biology

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=22744436580&partnerID=8YFLogxK

摘要

Caspases are responsible for the execution of programmed cell death (apoptosis) and must undergo proteolytic activation, in response to apoptotic stimuli, to function. The mechanism of initiator caspase activation has been generalized by the induced proximity model, which is thought to drive dimerization-mediated activation of caspases. The initiator caspase, caspase-9, exists predominantly as a monomer in solution. To examine the induced proximity model, we engineered a constitutively dimeric caspase-9 by relieving steric hindrance at the dimer interface. Crystal structure of the engineered caspase-9 closely resembles that of the wild-type (WT) caspase-9, including all relevant structural details and the asymmetric nature of two monomers. Compared to the WT caspase-9, this engineered dimer exhibits a higher level of catalytic activity in vitro and induces more efficient cell death when expressed. However, the catalytic activity of the dimeric caspase-9 is only a small fraction of that for the Apaf-1-activated caspase-9. Furthermore, in contrast to the WT caspase-9, the activity of the dimeric caspase-9 can no longer be significantly enhanced in an Apaf-1-dependent manner. These findings suggest that dimerization of caspase-9 may be qualitatively different from its activation by Apaf-1, and in conjunction with other evidence, posit an induced conformation model for the activation of initiator caspases.

相关科学

农业与生物科学
生物化学、遗传学和分子生物学
免疫和微生物学
神经系统科学

文献指纹

农业与生物学

caspase-9

caspases

engineering

dimerization

catalytic activity

programmed cell death

crystal structure

cell death

apoptosis

化合物

Caspase 9

Caspases

Chemical activation

Initiator Caspases

Dimerization

Dimers

Cell death

Catalyst activity

Monomers

Crystal structure

Conformations

Apoptosis

医学与生命科学

Caspase 9

Caspases

Initiator Caspases

Dimerization

Cell Death

Apoptosis

In Vitro Techniques

被引量

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999
2000
2001
2002
2003
2004 6.047 2.24
2005 7.087 2.498
2006 6.415 2.45
2007 6.899 2.801
2008 6.663 2.852
2009 7.722 2.949
2010 7.847 2.734
2011 17.3 8.744 2.601
2012 17.2 8.791 2.674
2013 16.4 8.223 2.626
2014 13.6 6.814 2.314
2015 11.6 5.596 2.043
2016 12 5.06 1.98
2017 12.8 4.941 2.066
2018 11.3 4.783 2.102
2019 10.6 4.488 2.066
2020 11.1
2021

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