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results confirmed the association of BTBD9 (show BTBD9 ELISA Kits) and MAP2K5/SKOR1 (show SKOR1 ELISA Kits) with primary Restless Legs Syndrome in Chinese population
Results revealed the expression of MEK5 was higher in tumor tissues and provide evidence that MEK5 plays an important role in colorectal cancer progression.
Insights into a molecular mechanism by which MEK5 transcriptionally upregulated by Stat3 (show STAT3 ELISA Kits) augments breast cancer cell EMT (show ITK ELISA Kits), which subsequently enhances cancer cell invasion and metastasis. This finding may suggest that Stat3 (show STAT3 ELISA Kits) and MEK5/Erk5 (show MAPK7 ELISA Kits) pathways could be an effective therapeutic target for inhibition of breast cancer invasion and metastasis.
Our findings confirm an association between the BTBD9 (show BTBD9 ELISA Kits), MEIS1 (show MEIS1 ELISA Kits), and MAP2K5/SKOR1 (show SKOR1 ELISA Kits) SNPs and periodic limb movements of sleep in an elderly cohort.
Specifically, CKS1B (show CKS1B ELISA Kits) and MAP2K5 significantly inhibited hepatitis C viral RNA replication. PACSIN1 (show PACSIN1 ELISA Kits), by contrast, inhibited hepatitis C virus infection by decreasing the level of viral protein p7.
High MEK5 expression is associated with colorectal cancer.
SEC16B, MC4R, MAP2K5 and KCTD15 (rs17782313, rs543874, rs2241423 and rs11084753) polymorphisms are associated with the risk for children obesity in China.
Periodic leg movements during sleep are associated with polymorphisms in BTBD9 (show BTBD9 ELISA Kits), TOX3 (show TOX3 ELISA Kits)/BC034767, MEIS1 (show MEIS1 ELISA Kits), MAP2K5/SKOR1 (show SKOR1 ELISA Kits), and PTPRD (show PTPRD ELISA Kits)
Inhibitors of apoptosis proteins regulate myogenic differentiation by directly suppressing MEKK2 (show MAP3K2 ELISA Kits)/3-MEK5-ERK5 (show MAPK7 ELISA Kits) signaling.
MiR (show MLXIP ELISA Kits)-330-3p and MAP2K5 are potentially important contributors to mood and anxiety-related traits
These results suggest that YAP (show YAP1 ELISA Kits) promotes muscle differentiation by activating the Abl (show ABL1 ELISA Kits)/Src (show SRC ELISA Kits)/MEKK3 (show MAP3K3 ELISA Kits)/MEK5/ERK5 (show MAPK7 ELISA Kits) kinase cascade.
MEK5 overexpression inhibits differentiation of osteoblasts.
the MEK5-ERK5 (show MAPK7 ELISA Kits) MAP kinase (show MAPK1 ELISA Kits) signaling pathway has a critical role in BAFF (show TNFSF13B ELISA Kits)-induced mature B cell survival and homeostatic maintenance of B2 cell numbers
The MEK5/ERK5 (show MAPK7 ELISA Kits) pathway also mediates FSS-induced Runx-2 (show RUNX2 ELISA Kits) expression in osteoblast differentiation.
finding suggested that REST promoted primordial germ cells survival via regulation of the Mek5 expression
PB1 domain mediates the association of MEKK2 (show MAP3K2 ELISA Kits) and MEKK3 (show MAP3K3 ELISA Kits) with MEK5 and that the respective PB1 domains of these kinases are critical for regulation of the ERK5 (show MAPK7 ELISA Kits) pathway.
MEK5 is an activator of ERK5 (show MAPK7 ELISA Kits) and an essential regulator of cell survival that is required for normal embryonic development
the N terminus of MEK5alpha is critical for the specific organization of the components of the ERK5 (show MAPK7 ELISA Kits) signaling pathway
MEK5 and big MAP kinase 1 (BMK1 (show MAPK7 ELISA Kits)) function downstream of MEKK3 (show MAP3K3 ELISA Kits) in a signaling cascade that induces calcineurin activity through phosphorylation of MCIP1 (show PPP3R1 ELISA Kits)
A noncanonical function of Map2k5 domain is decribed for coordinated erk5 (show MAPK7 ELISA Kits) kinase and map2k7 (show MAP2K7 ELISA Kits) signaling.
results indicated that AIK1-MKK5-MPK6 (show MAPK6 ELISA Kits) functions in ABA responses and requires ABA-responsive gene expression to regulate ABA-inhibited root growth and cell division. The ABA signaling pathway regulates this MAPK (show MAPK1 ELISA Kits) cascade.
AIK1-MKK5-MPK6 (show MAPK6 ELISA Kits) cascade functions in the abscisic acid regulation of primary root growth and stomatal response.
MKK4 (show MAP2K4 ELISA Kits), MKK5, MKK7 (show MAP2K7 ELISA Kits), and MKK9, are responsible for the activation of MPK3 (show MAPK3 ELISA Kits) and MPK6 (show MAPK6 ELISA Kits) by melatonin, indicating that melatonin-mediated innate immunity is triggered by MAPK (show MAPK1 ELISA Kits) signaling through MKK4 (show MAP2K4 ELISA Kits)/5/7/9-MPK3 (show MAPK3 ELISA Kits)/6 cascades.
Overexpression of MKK5 in wild-type plants enhanced their tolerance to salt treatments. Another kinase, MPK6 (show MAPK6 ELISA Kits), was also involved in the MKK5-mediated iron superoxide dismutase (FSD) signalling pathway in salt stress.
our data indicate that EDR1 (show PHC1 ELISA Kits) physically associates with MKK4 (show MAP2K4 ELISA Kits)/MKK5 and negatively regulates the MAPK (show MAPK1 ELISA Kits) cascade to fine-tune plant innate immunity.
Data indicate that in the MKK5-RNAi (RNA interference) lines, the induction of CSD1 and CSD2 (show TGFB1 ELISA Kits) as well as the activation of MKK5 activity were completely arrested.
Results suggest that the YDA-MKK4 (show MAP2K4 ELISA Kits)/MKK5-MPK3 (show MAPK3 ELISA Kits)/MPK6 (show MAPK6 ELISA Kits) cascade functions downstream of the ER receptor in regulating localized cell proliferation, which further shapes the morphology of plant organs.
MKK5 functions both in ozone-induced activation of MPK3 (show MAPK3 ELISA Kits) and MPK6 (show MAPK6 ELISA Kits) and in integrating reactive oxygen species homeostasis during ozone stress.
MKK5 is a key regulator of stomatal development and patterning.
The protein encoded by this gene is a dual specificity protein kinase that belongs to the MAP kinase kinase family. This kinase specifically interacts with and activates MAPK7/ERK5. This kinase itself can be phosphorylated and activated by MAP3K3/MEKK3, as well as by atypical protein kinase C isoforms (aPKCs). The signal cascade mediated by this kinase is involved in growth factor stimulated cell proliferation and muscle cell differentiation. Three alternatively spliced transcript variants of this gene encoding distinct isoforms have been described.
MAP kinase kinase 5
, MAPK/ERK kinase 5
, MAPKK 5
, MEK 5
, dual specificity mitogen-activated protein kinase kinase 5
, mitogen-activated protein kinase kinase 5
, MAP kinase kinase MEK5b
, MAPK/ERK kinese 5
, mitogen activated protein kinase kinase 5