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6
result(s) for
"Grammastro, M Del"
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AKT1(E17K) in human solid tumours
by
Cardone, L
,
Zanon, C
,
Bardelli, A
in
Class I Phosphatidylinositol 3-Kinases
,
Humans
,
Mutation
2008
The serine-threonine kinase AKT1 is a central player in the oncogenic pathway controlled by PI3K. Recently, a somatic mutation in AKT1 (E17K) has been detected in breast, colorectal, lung and ovarian cancers. The E17K change results in constitutive AKT1 activation and induces leukaemia in mice. We determined the occurrence of the E17K variant in a panel of 764 tumour samples. These included breast, lung, ovarian, colorectal and pancreatic carcinomas as well as melanomas and glioblastomas. Despite the fact that these tumours are known to bear alterations in genes involved in the PI3K signalling pathway, AKT1(E17K) was detected only in breast (16/273), colorectal (1/88) and lung (1/155) cancers. Within the neoplasms of breast origin, the AKT1(E17K) variant was mutually exclusive with respect to the PIK3CA(E454K or H1047R) alleles and was present only in ductal and lobular histotypes. Our results, showing that AKT1 mutations seem to occur in a tissue-specific fashion have basic and clinical implications. First, the activity of mutated AKT1 in oncogenic PI3K signalling could be strictly dependent on the cell and tissue milieu. Second, therapeutic efforts aimed at selective targeting the AKT1(E17K) variant could be effective mainly in specific cancer types.
Journal Article
AKT1E17K in human solid tumours
by
Cardone, L
,
Zanon, C
,
Bardelli, A
in
1-Phosphatidylinositol 3-kinase
,
AKT1 protein
,
Apoptosis
2008
The serine-threonine kinase AKT1 is a central player in the oncogenic pathway controlled by PI3K. Recently, a somatic mutation in
AKT1
(E17K) has been detected in breast, colorectal, lung and ovarian cancers. The E17K change results in constitutive
AKT1
activation and induces leukaemia in mice. We determined the occurrence of the E17K variant in a panel of 764 tumour samples. These included breast, lung, ovarian, colorectal and pancreatic carcinomas as well as melanomas and glioblastomas. Despite the fact that these tumours are known to bear alterations in genes involved in the PI3K signalling pathway,
AKT1
E17K
was detected only in breast (16/273), colorectal (1/88) and lung (1/155) cancers. Within the neoplasms of breast origin, the
AKT1
E17K
variant was mutually exclusive with respect to the
PIK3CA
E454K
or
H1047R
alleles and was present only in ductal and lobular histotypes. Our results, showing that
AKT1
mutations seem to occur in a tissue-specific fashion have basic and clinical implications. First, the activity of mutated
AKT1
in oncogenic PI3K signalling could be strictly dependent on the cell and tissue milieu. Second, therapeutic efforts aimed at selective targeting the
AKT1
E17K
variant could be effective mainly in specific cancer types.
Journal Article
in human solid tumours
by
Cardone, L
,
Bleeker, F.E
,
Zanon, C
in
Cancer
,
Care and treatment
,
Cellular signal transduction
2008
Journal Article
AKT1 E17K in human solid tumours
2008
The serine-threonine kinase AKT1 is a central player in the oncogenic pathway controlled by PI3K. Recently, a somatic mutation in AKT1 (E17K) has been detected in breast, colorectal, lung and ovarian cancers. The E17K change results in constitutive AKT1 activation and induces leukaemia in mice. We determined the occurrence of the E17K variant in a panel of 764 tumour samples. These included breast, lung, ovarian, colorectal and pancreatic carcinomas as well as melanomas and glioblastomas. Despite the fact that these tumours are known to bear alterations in genes involved in the PI3K signalling pathway, AKT1 E17K was detected only in breast (16/273), colorectal (1/88) and lung (1/155) cancers. Within the neoplasms of breast origin, the AKT1 E17K variant was mutually exclusive with respect to the PIK3CA E454K or H1047R alleles and was present only in ductal and lobular histotypes. Our results, showing that AKT1 mutations seem to occur in a tissue-specific fashion have basic and clinical implications. First, the activity of mutated AKT1 in oncogenic PI3K signalling could be strictly dependent on the cell and tissue milieu. Second, therapeutic efforts aimed at selective targeting the AKT1 E17K variant could be effective mainly in specific cancer types.
Journal Article
AKT1 super(E17K) in human solid tumours
2008
The serine-threonine kinase AKT1 is a central player in the oncogenic pathway controlled by PI3K. Recently, a somatic mutation in AKT1 (E17K) has been detected in breast, colorectal, lung and ovarian cancers. The E17K change results in constitutive AKT1 activation and induces leukaemia in mice. We determined the occurrence of the E17K variant in a panel of 764 tumour samples. These included breast, lung, ovarian, colorectal and pancreatic carcinomas as well as melanomas and glioblastomas. Despite the fact that these tumours are known to bear alterations in genes involved in the PI3K signalling pathway, AKT1 super(E17K) was detected only in breast (16/273), colorectal (1/88) and lung (1/155) cancers. Within the neoplasms of breast origin, the AKT1 super(E17K) variant was mutually exclusive with respect to the PIK3CA super(E454KorH1047R) alleles and was present only in ductal and lobular histotypes. Our results, showing that AKT1 mutations seem to occur in a tissue-specific fashion have basic and clinical implications. First, the activity of mutated AKT1 in oncogenic PI3K signalling could be strictly dependent on the cell and tissue milieu. Second, therapeutic efforts aimed at selective targeting the AKT1 super(E17K) variant could be effective mainly in specific cancer types.Oncogene (2008) 27, 5648-5650; doi:10.1038/onc.2008.170; published online 26 May 2008
Journal Article