HN1 overexpression after Nocodazole Block (post-G2) using transient

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Last updated 22 dezembro 2024
HN1 overexpression after Nocodazole Block (post-G2) using transient
HN1 overexpression after Nocodazole Block (post-G2) using transient
Aurora kinase-induced phosphorylation excludes transcription factor RUNX from the chromatin to facilitate proper mitotic progression
HN1 overexpression after Nocodazole Block (post-G2) using transient
Androgen receptor phosphorylation: biological context and functional consequences in: Endocrine-Related Cancer Volume 21 Issue 4 (2014)
HN1 overexpression after Nocodazole Block (post-G2) using transient
Enrichment of G2/M cell cycle phase in human pluripotent stem cells enhances HDR-mediated gene repair with customizable endonucleases
HN1 overexpression after Nocodazole Block (post-G2) using transient
Optimizing Cell Synchronization Using Nocodazole or Double Thymidine Block
HN1 overexpression after Nocodazole Block (post-G2) using transient
Cell Cycle Synchronization of the Murine EO771 Cell Line Using Double Thymidine Block Treatment - Goepp - 2020 - BioEssays - Wiley Online Library
HN1 overexpression after Nocodazole Block (post-G2) using transient
Peptides - 5Z.com
HN1 overexpression after Nocodazole Block (post-G2) using transient
Androgen receptor phosphorylation: biological context and functional consequences in: Endocrine-Related Cancer Volume 21 Issue 4 (2014)
HN1 overexpression after Nocodazole Block (post-G2) using transient
HN1 overexpression leads down-regulation of AR expression, whereas HN1
HN1 overexpression after Nocodazole Block (post-G2) using transient
Optimizing Cell Synchronization Using Nocodazole or Double Thymidine Block
HN1 overexpression after Nocodazole Block (post-G2) using transient
chTOG is a conserved mitotic error correction factor
HN1 overexpression after Nocodazole Block (post-G2) using transient
The G2-to-M transition from a phosphatase perspective: a new vision of the meiotic division, Cell Division

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