Nuclear cathepsin D enhances TRPS1 transcriptional repressor function to regulate cell cycle progression and transformation in human breast cancer cells
about
FOXM1 facilitates gastric cancer cell migration and invasion by inducing Cathepsin D.Expression of miRNA-26b-5p and its target TRPS1 is associated with radiation exposure in post-Chernobyl breast cancer.Two Membrane-Anchored Aspartic Proteases Contribute to Pollen and Ovule Development.TRPS1 Suppresses Breast Cancer Epithelial-mesenchymal Transition Program as a Negative Regulator of SUZ12.Cation-dependent mannose-6-phosphate receptor expression and distribution are influenced by estradiol in MCF-7 breast cancer cellsOverexpression Cathepsin D Contributes to Perineural Invasion of Salivary Adenoid Cystic Carcinoma
P2860
Nuclear cathepsin D enhances TRPS1 transcriptional repressor function to regulate cell cycle progression and transformation in human breast cancer cells
description
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name
Nuclear cathepsin D enhances T ...... n in human breast cancer cells
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Nuclear cathepsin D enhances T ...... n in human breast cancer cells
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type
label
Nuclear cathepsin D enhances T ...... n in human breast cancer cells
@ast
Nuclear cathepsin D enhances T ...... n in human breast cancer cells
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prefLabel
Nuclear cathepsin D enhances T ...... n in human breast cancer cells
@ast
Nuclear cathepsin D enhances T ...... n in human breast cancer cells
@en
P2093
P2860
P50
P356
P1433
P1476
Nuclear cathepsin D enhances T ...... n in human breast cancer cells
@en
P2093
Anne-Sophie Bach
Béatrice Orsetti
Christian Gespach
Céline Gongora
Danielle Derocq
Frank J Kaiser
Guillaume Meurice
Philippe Montcourrier
Salwa Sebti
P2860
P304
28084-28103
P356
10.18632/ONCOTARGET.4394
P407
P50
P577
2015-06-27T00:00:00Z