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Publications

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Maier B, Wendt S, Vanselow JT, Wallach T, Reischl S, Oehmke S, Schlosser A, Kramer A
2009 Mar 15;23(6):708-18

A large-scale functional RNAi screen reveals a role for CK2 in the mammalian circadian clock

Granada A, Hennig RM, Ronacher B, Kramer A, Herzel H
2009;454:1-27

Phase response curves elucidating the dynamics of coupled oscillators

2008

Chiu JC, Vanselow JT, Kramer A, Edery I
2008 Jul 1;22(13):1758-72

The phospho-occupancy of an atypical SLIMB-binding site on PERIOD that is phosphorylated by DOUBLETIME controls the pace of the clock

Locke JC, Westermark PO, Kramer A, Herzel H
2008 Feb 29;2:22

Global parameter search reveals design principles of the mammalian circadian clock

Brown SA, Kunz D, Dumas A, Westermark PO, Vanselow K, Tilmann-Wahnschaffe A, Herzel H, Kramer A
2008 Feb 5;105(5):1602-7

Molecular insights into human daily behavior

2007

Reischl S, Vanselow K, Westermark PO, Thierfelder N, Maier B, Herzel H, Kramer A
2007 Oct;22(5):375-86

Beta-TrCP1-mediated degradation of PERIOD2 is essential for circadian dynamics

Bernard S, Gonze D, Cajavec B, Herzel H, Kramer A
2007 Apr 13;3(4):e68

Synchronization-induced rhythmicity of circadian oscillators in the suprachiasmatic nucleus

Zhao WN, Malinin N, Yang FC, Staknis D, Gekakis N, Maier B, Reischl S, Kramer A, Weitz CJ
2007 Mar;9(3):268-75

CIPC is a mammalian circadian clock protein without invertebrate homologues

Vanselow K, Kramer A
2007;72:167-76

Role of phosphorylation in the mammalian circadian clock

Bozek K, Kiełbasa SM, Kramer A, Herzel H
2007;18:65-74

Promoter analysis of Mammalian clock controlled genes

2006

Vanselow K, Vanselow JT, Westermark PO, Reischl S, Maier B, Korte T, Herrmann A, Herzel H, Schlosser A, Kramer A
2006 Oct 1;20(19):2660-72

Differential effects of PER2 phosphorylation: molecular basis for the human familial advanced sleep phase syndrome (FASPS)

2005

Schlosser A, Vanselow JT, Kramer A
2005 Aug 15;77(16):5243-50

Mapping of phosphorylation sites by a multi-protease approach with specific phosphopeptide enrichment and NanoLC-MS/MS analysis

Gonze D, Bernard S, Waltermann C, Kramer A, Herzel H
2005 Jul;89(1):120-9

Spontaneous synchronization of coupled circadian oscillators

Geier F, Becker-Weimann S, Kramer A, Herzel H
2005 Feb;20(1):83-93

Entrainment in a model of the mammalian circadian oscillator

Kramer A, Yang FC, Kraves S, Weitz CJ
2005;393:645-63

A screen for secreted factors of the suprachiasmatic nucleus

2004

Becker-Weimann S, Wolf J, Herzel H, Kramer A
2004 Nov;87(5):3023-34

Modeling feedback loops of the mammalian circadian oscillator

Becker-Weimann S, Wolf J, Kramer A, Herzel H
2004;15(1):3-12

A model of the mammalian circadian oscillator including the REV-ERBalpha module

2001

Kramer A, Yang FC, Snodgrass P, Li X, Scammell TE, Davis FC, Weitz CJ
2001 Dec 21;294(5551):2511-5

Regulation of daily locomotor activity and sleep by hypothalamic EGF receptor signaling

Selected publications from other research fields

Hoffmüller U, Knaute T, Hahn M, Höhne W, Schneider-Mergener J, Kramer A
2000 Sep 15;19(18):4866-74

Evolutionary transition pathways for changing peptide ligand specificity and structure

Maier B, Molinger M, Cope AP, Fugger L, Schneider-Mergener J, Sønderstrup G, Kamradt T, Kramer A
2000 Feb;30(2):448-57

Multiple cross-reactive self-ligands for Borrelia burgdorferi-specific HLA-DR4-restricted T cells

Kramer A, Schneider-Mergener J
1998;87:25-39

Synthesis and screening of peptide libraries on continuous cellulose membrane supports

Kramer A, Keitel T, Winkler K, Stöcklein W, Höhne W, Schneider-Mergener J
1997 Dec 12;91(6):799-809

Molecular basis for the binding promiscuity of an anti-p24 (HIV-1) monoclonal antibody

Keitel T, Kramer A, Wessner H, Scholz C, Schneider-Mergener J, Höhne W
1997 Dec 12;91(6):811-20

Crystallographic analysis of anti-p24 (HIV-1) monoclonal antibody cross-reactivity and polyspecificity