Constructing a feedback loop with circadian clock molecules from the silkmoth, Antheraea pernyi

被引:60
作者
Chang, DC
McWatters, HG
Williams, JA
Gotter, AL
Levine, JD
Reppert, SM
机构
[1] Univ Massachusetts, Sch Med, Dept Neurobiol, Med Ctr, Worcester, MA 01605 USA
[2] Massachusetts Gen Hosp, MassGen Hosp Children, Lab Dev Chronobiol, Boston, MA 02114 USA
[3] Harvard Univ, Sch Med, Program Neurosci, Boston, MA 02115 USA
关键词
D O I
10.1074/jbc.M306937200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Circadian clocks are important regulators of behavior and physiology. The circadian clock of Drosophila depends on an autoinhibitory feedback loop involving dCLOCK, CYCLE (also called dBMAL, for Drosophila brain and muscle ARNT-like protein), dPERIOD, and dTIMELESS. Recent studies suggest that the clock mechanism in other insect species may differ strikingly from that of Drosophila. We cloned Clock, Bmal, and Timeless homologs (apClock, apBmal, and apTimeless) from the silkmoth Antheraea pernyi, from which a Period homolog (apPeriod) has already been cloned. In Schneider 2 (S2) cell culture assays, apCLOCK:apBMAL activates transcription through an E-box enhancer element found in the 5' region of the apPeriod gene. Furthermore, apPERIOD can robustly inhibit apCLOCK:apBMAL-mediated transactivation, and apTIMELESS can augment this inhibition. Thus, a complete feedback loop, resembling that found in Drosophila, can be constructed from silkmoth CLOCK, BMAL, PERIOD, and TIMELESS. Our results suggest that the circadian autoinhibitory feedback loop discovered in Drosophila is likely to be widespread among insects. However, whereas the transactivation domain in Drosophila lies in the C terminus of dCLOCK, in A. pernyi, it lies in the C terminus of apBMAL, which is highly conserved with the C termini of BMALs in other insects (except Drosophila) and in vertebrates. Our analysis sheds light on the molecular function and evolution of clock genes in the animal kingdom.
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页码:38149 / 38158
页数:10
相关论文
共 51 条
[21]   The genome sequence of the malaria mosquito Anopheles gambiae [J].
Holt, RA ;
Subramanian, GM ;
Halpern, A ;
Sutton, GG ;
Charlab, R ;
Nusskern, DR ;
Wincker, P ;
Clark, AG ;
Ribeiro, JMC ;
Wides, R ;
Salzberg, SL ;
Loftus, B ;
Yandell, M ;
Majoros, WH ;
Rusch, DB ;
Lai, ZW ;
Kraft, CL ;
Abril, JF ;
Anthouard, V ;
Arensburger, P ;
Atkinson, PW ;
Baden, H ;
de Berardinis, V ;
Baldwin, D ;
Benes, V ;
Biedler, J ;
Blass, C ;
Bolanos, R ;
Boscus, D ;
Barnstead, M ;
Cai, S ;
Center, A ;
Chatuverdi, K ;
Christophides, GK ;
Chrystal, MA ;
Clamp, M ;
Cravchik, A ;
Curwen, V ;
Dana, A ;
Delcher, A ;
Dew, I ;
Evans, CA ;
Flanigan, M ;
Grundschober-Freimoser, A ;
Friedli, L ;
Gu, ZP ;
Guan, P ;
Guigo, R ;
Hillenmeyer, ME ;
Hladun, SL .
SCIENCE, 2002, 298 (5591) :129-+
[22]   PAS IS A DIMERIZATION DOMAIN COMMON TO DROSOPHILA PERIOD AND SEVERAL TRANSCRIPTION FACTORS [J].
HUANG, ZJ ;
EDERY, I ;
ROSBASH, M .
NATURE, 1993, 364 (6434) :259-262
[23]   Zebrafish CRY represses transcription mediated by CLOCK-BMAL heterodimer without inhibiting its binding to DNA [J].
Ishikawa, T ;
Hirayama, J ;
Kobayashi, Y ;
Todo, T .
GENES TO CELLS, 2002, 7 (10) :1073-1086
[24]   Similarity of the C-elegans developmental timing protein LIN-42 to circadian rhythm proteins [J].
Jeon, M ;
Gardner, HF ;
Miller, EA ;
Deshler, J ;
Rougvie, AE .
SCIENCE, 1999, 286 (5442) :1141-1146
[25]   A molecular mechanism regulating rhythmic output from the suprachiasmatic circadian clock [J].
Jin, XW ;
Shearman, LP ;
Weaver, DR ;
Zylka, MJ ;
De Vries, GJ ;
Reppert, SM .
CELL, 1999, 96 (01) :57-68
[26]   Positional cloning of the mouse circadian Clock gene [J].
King, DP ;
Zhao, YL ;
Sangoram, AM ;
Wilsbacher, LD ;
Tanaka, M ;
Antoch, MP ;
Steeves, TDL ;
Vitaterna, MH ;
Kornhauser, JM ;
Lowrey, PL ;
Turek, FW ;
Takahashi, JS .
CELL, 1997, 89 (04) :641-653
[27]   mCRY1 and mCRY2 are essential components of the negative limb of the circadian clock feedback loop [J].
Kume, K ;
Zylka, MJ ;
Sriram, S ;
Shearman, LP ;
Weaver, DR ;
Jin, XW ;
Maywood, ES ;
Hastings, MH ;
Reppert, SM .
CELL, 1999, 98 (02) :193-205
[28]   Initial sequencing and analysis of the human genome [J].
Lander, ES ;
Int Human Genome Sequencing Consortium ;
Linton, LM ;
Birren, B ;
Nusbaum, C ;
Zody, MC ;
Baldwin, J ;
Devon, K ;
Dewar, K ;
Doyle, M ;
FitzHugh, W ;
Funke, R ;
Gage, D ;
Harris, K ;
Heaford, A ;
Howland, J ;
Kann, L ;
Lehoczky, J ;
LeVine, R ;
McEwan, P ;
McKernan, K ;
Meldrim, J ;
Mesirov, JP ;
Miranda, C ;
Morris, W ;
Naylor, J ;
Raymond, C ;
Rosetti, M ;
Santos, R ;
Sheridan, A ;
Sougnez, C ;
Stange-Thomann, N ;
Stojanovic, N ;
Subramanian, A ;
Wyman, D ;
Rogers, J ;
Sulston, J ;
Ainscough, R ;
Beck, S ;
Bentley, D ;
Burton, J ;
Clee, C ;
Carter, N ;
Coulson, A ;
Deadman, R ;
Deloukas, P ;
Dunham, A ;
Dunham, I ;
Durbin, R ;
French, L .
NATURE, 2001, 409 (6822) :860-921
[29]   Posttranslational mechanisms regulate the mammalian circadian clock [J].
Lee, C ;
Etchegaray, JP ;
Cagampang, FRA ;
Loudon, ASI ;
Reppert, SM .
CELL, 2001, 107 (07) :855-867
[30]  
Lee C, 1999, MOL CELL BIOL, V19, P5316