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European Journal of Biochemistry
|
July 15, 1993
Analysis of the resistance to heat and hydrogen peroxide stresses in COS cells transiently expressing wild type or deletion mutants of the Drosophila 27-kDa heat-shock protein
P Mehlen, J Briolay, L Smith, et al.
Nature
|
October 31, 1998
The DCC gene product induces apoptosis by a mechanism requiring receptor proteolysis
P Mehlen, S Rabizadeh, S J Snipas, et al.
Cancer Research
|
December 16, 1998
Heat shock protein 27 enhances the tumorigenicity of immunogenic rat colon carcinoma cell clones
C Garrido, A Fromentin, B Bonnotte, et al.
Cell Death and Differentiation
|
January 17, 2009
Netrin-1 interacts with amyloid precursor protein and regulates amyloid-beta production
F C Lourenço, V Galvan, J Fombonne, et al.
The EMBO Journal
|
August 2, 2000
The RET proto-oncogene induces apoptosis: a novel mechanism for Hirschsprung disease
M C Bordeaux, C Forcet, L Granger, et al.
Cell Death and Differentiation
|
August 22, 2015
ϒ-secretase and LARG mediate distinct RGMa activities to control appropriate layer targeting within the optic tectum
P Banerjee, H Harada, N G Tassew, et al.
Cell Death and Differentiation
|
June 23, 2009
Interfering with multimerization of netrin-1 receptors triggers tumor cell death
F Mille, F Llambi, C Guix, et al.
FEBS Letters
|
January 10, 1994
Regulation of the 28 kDa heat shock protein by retinoic acid during differentiation of human leukemic HL-60 cells
N L Spector, P Mehlen, C Ryan, et al.
British Journal of Cancer
|
May 26, 2012
Targeting heat shock protein 27 (HspB1) interferes with bone metastasis and tumour formation in vivo
B Gibert, B Eckel, V Gonin, et al.
Cell Death & Disease
|
October 19, 2013
Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
J Lefebvre, G Muharram, C Leroy, et al.
Page
of 5
Search research articles
Search
Showing results (31-40 of 46) with videos related to
Sort By:
Page
of 5
European Journal of Biochemistry
|
July 15, 1993
Analysis of the resistance to heat and hydrogen peroxide stresses in COS cells transiently expressing wild type or deletion mutants of the Drosophila 27-kDa heat-shock protein
P Mehlen, J Briolay, L Smith, et al.
Nature
|
October 31, 1998
The DCC gene product induces apoptosis by a mechanism requiring receptor proteolysis
P Mehlen, S Rabizadeh, S J Snipas, et al.
Cancer Research
|
December 16, 1998
Heat shock protein 27 enhances the tumorigenicity of immunogenic rat colon carcinoma cell clones
C Garrido, A Fromentin, B Bonnotte, et al.
Cell Death and Differentiation
|
January 17, 2009
Netrin-1 interacts with amyloid precursor protein and regulates amyloid-beta production
F C Lourenço, V Galvan, J Fombonne, et al.
The EMBO Journal
|
August 2, 2000
The RET proto-oncogene induces apoptosis: a novel mechanism for Hirschsprung disease
M C Bordeaux, C Forcet, L Granger, et al.
Cell Death and Differentiation
|
August 22, 2015
ϒ-secretase and LARG mediate distinct RGMa activities to control appropriate layer targeting within the optic tectum
P Banerjee, H Harada, N G Tassew, et al.
Cell Death and Differentiation
|
June 23, 2009
Interfering with multimerization of netrin-1 receptors triggers tumor cell death
F Mille, F Llambi, C Guix, et al.
FEBS Letters
|
January 10, 1994
Regulation of the 28 kDa heat shock protein by retinoic acid during differentiation of human leukemic HL-60 cells
N L Spector, P Mehlen, C Ryan, et al.
British Journal of Cancer
|
May 26, 2012
Targeting heat shock protein 27 (HspB1) interferes with bone metastasis and tumour formation in vivo
B Gibert, B Eckel, V Gonin, et al.
Cell Death & Disease
|
October 19, 2013
Caspase-generated fragment of the Met receptor favors apoptosis via the intrinsic pathway independently of its tyrosine kinase activity
J Lefebvre, G Muharram, C Leroy, et al.
Page
of 5