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1 ompanied by a change in the abundance of the ATM protein.
2 d by western blot for abnormal expression of ATM protein.
3 acid changes or premature truncation of the ATM protein.
4 All four cases lacked ATM protein.
5 ing to generate mice that do not express the Atm protein.
6 era raised against the approximately 350 kDa ATM protein.
7 of p53 or the ataxia telangiectasia mutated (ATM) protein.
8 ated with the ataxia telangiectasia mutated (ATM) protein.
10 uggested that ataxia-telangiectasia mutated (ATM) protein, a protein kinase, is a direct target of mi
11 is the human Ataxia Telangiectasia Mutated (ATM) protein, a wortmannin-sensitive protein kinase that
13 in A-T cells; AMOs restored up to 20% of the ATM protein and corrected the A-T cellular phenotype.
14 ex of approximately 500 kDa containing the X-ATM protein and other, as yet unidentified component(s).
15 ecombinant X-ATM are highly specific for the ATM protein and recognize a single polypeptide of 370-kD
17 ctors such as ataxia telangiectasia mutated (ATM) protein and combined deficiencies in classical non-
18 Inhibition of ataxia telangiectasia mutated (ATM) protein and DNA-PK could not suppress the induction
19 reatment-induced apoptosis by activating the ATM protein, and that the presence of the XPC protein is
21 pattern and the nuclear localization of the ATM protein are consistent with the proposed function of
22 nd immunoblot analysis, we show that Atr and Atm proteins are approximately 300 and 350 kD relative m
23 ntly reduced episome levels, suggesting that ATM proteins are playing an important role in HPV episom
27 by using X-ray crystal structures of a Vps34-ATM protein chimera where the Vps34 ATP-binding site was
28 nase' subclass of kinases which includes the ATM protein defective in ataxia telangiectasia patients.
31 now show that ATM kinase inhibition, but not ATM protein disruption, also inhibits DNA synthesis.
32 reported that ATM kinase inhibition, but not ATM protein disruption, blocks sister chromatid exchange
37 y, monoubiquitination of Fanconi protein D2, ATM protein expression, and non-homologous DNA end joini
39 o the translation of full-length, functional ATM protein for at least 84 h in the three cell lines ex
46 y at 11q22-23 and, more recently, absence of ATM protein, have been associated with poor prognosis in
47 ng compounds consistently induced functional ATM protein in ATM-deficient cells containing disease-ca
49 findings are consistent with a role for the ATM protein in ensuring the fidelity of DNA repair and c
52 telangiectasia based on their effect on the ATM protein, including five that caused a protein trunca
53 ion experiment further demonstrated that the ATM protein interacted with the TFIIH basal transcriptio
59 as been previously proposed and that loss of ATM protein is not sufficient to induce cerebellar degen
62 show that the ataxia-telangiectasia mutated (ATM) protein is activated and forms telomeric foci in re
64 astogens, the ataxia telangiectasia mutated (ATM) protein is rapidly activated, which in turn initiat
66 emonstrate that DNA-PKcs, unlike the related ATM protein, is not essential for the activation of p53
69 patients are deficient in activation of the Atm protein kinase and phosphorylation of downstream Atm
70 l function in facilitating activation of the ATM protein kinase at sites of DNA double-strand breaks
74 double-strand break (DSB) activates ATR and ATM protein kinase homologs Mec1 and Tel1, which then ac
75 a consensus site for phosphorylation by the ATM protein kinase in cells; and TAO and p38 activation
94 trated by the ataxia-telangiectasia mutated (ATM) protein kinase and involves interruption of Hdm2-me
106 gest that the ataxia-telangiectasia-mutated (ATM) protein kinase signal-transduction pathway is prima
107 diated by the ATAXIA TELANGIECTASIA MUTATED (ATM) protein kinase, representing candidate factors that
108 m, led by the ataxia telangiectasia mutated (ATM) protein kinase, represses MITF transcriptional acti
109 on activation of the ataxia-telangiectasia (ATM) protein kinase, which phosphorylates cell-cycle eff
117 e reduced in ataxia telangiectasia cells and ATM protein levels were low in primary murine fibroblast
119 metic drug neocarzinostatin had no effect on ATM protein levels, in contrast to a noted rise in p53 l
120 RCA-associated cancers (without DDR-GAs), or ATM protein loss as determined by immunohistochemistry.
122 ypothesized that the absence of a functional ATM protein might involve perturbations to the ubiquitin
126 homolog of the human ataxia telangiectasia (ATM) protein, prevents these translocations, whereas the
127 e the acetyltransferase Tip60 must acetylate ATM proteins prior to their full activation by autophosp
128 lines lacking ataxia telangiectasia mutated (ATM) protein produced wild-type levels of infectious vir
129 ns, as demonstrated by direct measurement of ATM protein, restored ATM kinase activity, and colony su
130 A-T patients with 5-20% of normal levels of ATM protein show slower neurological progression, A-T ma
132 to R3047X in human ATM) severely compromises ATM protein stability and causes T cell developmental de
134 t a physiological role of the FATC domain in ATM protein stability and show that the presence of mini
135 anslated and produces a catalytically active ATM protein that responds to DNA damage by phosphorylati
138 In brain, although Bal/Bal mice have no ATM protein, they have nearly normal amounts of Atm mRNA
139 62ins137) that express a low level of normal ATM protein to evaluate the impact of residual Nbs1 func
143 -T patients and mouse models that express no ATM protein undergo normal embryonic development but exh
147 ne ATM mutation, and a variable reduction in ATM protein was detected in all 4 patients examined.
149 that the aminoglycoside-induced full-length ATM protein was functional and corrected, to various ext
154 help clarify the physiological roles of the ATM protein, we disrupted the ATM gene in mice through h
155 Here, we show that the expression levels of Atm protein were gradually increased during liver regene
156 the status of ataxia-telangiectasia mutated (ATM) protein, which activates p53 in response to DNA dam
158 stration of a nuclear association of Atr and Atm proteins with meiotic chromosomes and suggests a dir
159 expression of Ataxia Telangiectasia Mutated (ATM) protein within melanocytes in anagen hair follicle