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Required for MAP kinase p38 (MAPK11, MAPK12, MAPK13 and/or MAPK14) activation during gastrulation (By similarity). Additionally we are shipping Suppressor of Ty 20 Homolog (S. Cerevisiae) Antibodies (26) and many more products for this protein.
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Gcn5 and Supt20 hypomorphs show similar defects in rostral-caudal somite patterning potentially suggesting shared mechanisms.
Both p38 (show CRK Proteins) and p38IP are required for E-cadherin (show CDH1 Proteins) downregulation during gastrulation. Also, p38 (show CRK Proteins) regulates E-cadherin (show CDH1 Proteins) protein expression downstream from NCK-interacting kinase (show MAP4K4 Proteins).
p38IP inhibits ubiquitination-induced GCN5 (show KAT2A Proteins) degradation and therefore promotes alpha-tubulin (show TUBA4A Proteins) acetylation, facilitating spindle formation and G2/M progression.
hSPT20 and other hSAGA subunits, together with RNA polymerase II, are specifically recruited to genes induced by endoplasmic reticulum (ER) stress.
Manipulation of p38IP and p38alpha (show MAPK14 Proteins) alters mAtg9 (show ATG9A Proteins) localization, suggesting p38alpha (show MAPK14 Proteins) regulates, through p38IP, the starvation-induced mAtg9 (show ATG9A Proteins) trafficking to forming autophagosomes.
Novel transcription factors identified in human CD34 antigen (show CD34 Proteins)-positive hematopoietic stem cells.
C13orf19 mRNA is down-regulated in matched prostate tissues compared to prostate carcinoma tissues
C13orf19 is expressed independently of the androgen. No interaction between C13orf19 and p38MAPK (show MAPK14 Proteins) was identified.
mRNA is down-regulated in human prostate cancer, also described as C13
Required for MAP kinase p38 (MAPK11, MAPK12, MAPK13 and/or MAPK14) activation during gastrulation (By similarity).
, transcription factor SPT20 homolog
, family with sequence similarity 48, member A
, p38 interacting protein
, p38-interacting protein
, transcription factor (p38 interacting protein)
, tumor rejection antigen