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1 s a nucleoplasmin-like protein (NLP) with an AT-hook motif.
2 in of the SpOrc4 subunit which contains nine AT-hook motifs.
3 ts with HP1; the larger isoform contains two AT-hook motifs.
4 tative nuclear localization sequences and an AT-hook motif, a small DNA-binding domain first identifi
5 lilliputian (lilli), which contains an HMG1 (AT-hook) motif and a domain with similarity to the human
8 The coordinated action of AHLs requires an AT-hook motif capable of binding AT-rich DNA, as well as
9 The Arabidopsis thaliana genome encodes 29 AT-hook motif containing nuclear localized (AHL) genes,
12 nteracting protein, OsAHL1, which acts as an AT-hook motif-containing protein binding to the A/T-rich
13 -terminal domain contains nine copies of the AT-hook motif found in a number of DNA-binding proteins,
17 s in a modular fashion to DNA, with its RGRP AT-hook motif interacting with the TTT sequence at the 5
19 of the spOrc4 protein that contains multiple AT-hook motifs is essential for the ars1-binding activit
20 he nuclear localization signal (NLS) and two AT-hook motifs mediated non-specific DNA-binding, and DN
21 (AAK15343) exhibited a transcription factor AT-hook motif next to two bromodomains and a homology to
23 the discovery of two transcription factors, AT-HOOK MOTIF NUCLEAR LOCALIZED PROTEIN 3 (AHL3) and AHL
27 olves electrostatic interactions between the AT-hook motifs of SpOrc4 and AT tracts in ars1 DNA and r
28 by cooperative interactions of two identical AT-hook motifs, one of which is encoded by an alternativ
30 on-dependent matrices, we have extracted the AT-hook motifs present in a non-redundant protein sequen
32 d that it encodes a protein with a disrupted AT-hook motif that abolishes binding to AT-rich DNA.
33 35-kDa amino-terminal fragment spanning two AT hook motifs was sufficient for cell cycle arrest, up-
34 ynthesized All1 polypeptide encompassing the AT-hook motifs, we identified a 0.5-kb ARP1 DNA fragment
35 The protein contains four copies of the 'AT-hook' motif which is involved in binding A/T-rich DNA