+ |
PTTG1 | up-regulates quantity by expression
transcriptional regulation
|
S100A4 |
0.275 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-255070 |
|
|
Homo sapiens |
Lec15.1 CHO Cell |
pmid |
sentence |
19351864 |
PTTG induced S100A4 and galectin-1 mRNA and protein expression as assessed by Western blot and reverse transcription-PCR. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
+ |
CIITA | down-regulates quantity by repression
transcriptional regulation
|
S100A4 |
0.33 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-253776 |
|
|
Homo sapiens |
|
pmid |
sentence |
17143014 |
IFN-gamma represses S100A4 promoter activity through induction of the class II transactivator (CIITA). |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
+ |
SOD1 | up-regulates quantity
|
S100A4 |
0.2 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-262783 |
|
|
Rattus norvegicus |
Fibroblast, Astrocyte |
pmid |
sentence |
31623154 |
We found that S100A4 was significantly up-regulated in astrocytes and microglia in the spinal cord of a transgenic rat SOD1-G93A model of amyotrophic lateral sclerosis |
|
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-262784 |
|
|
Homo sapiens |
Fibroblast |
pmid |
sentence |
31623154 |
We demonstrated the increased expression of S100A4 also in fibroblasts derived from amyotrophic lateral sclerosis (ALS) patients carrying SOD1 pathogenic variants. |
|
Publications: |
2 |
Organism: |
Rattus Norvegicus, Homo Sapiens |
Tissue: |
Spinal Cord |
+ |
STAT4 | up-regulates quantity by expression
transcriptional regulation
|
S100A4 |
0.311 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-255246 |
|
|
Homo sapiens |
Breast Cancer Cell |
pmid |
sentence |
22740693 |
It suggests that HBXIP is able to activate S100A4 promoter via interacting with STAT4 in breast cancer cells, leading to the up-regulation of S100A4. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
+ |
S100A4 | down-regulates activity
binding
|
MYH9 |
0.428 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-269282 |
|
|
Mus musculus |
MTC-1 Cell |
pmid |
sentence |
16707441 |
Our results show that S100A4 regulates cell polarization during directed motility by affecting the localization of protrusions through interactions with myosin-IIA, with S100A4 expressing cells displaying few side protrusions and extensive forward protrusions during chemotaxis compared with control cells. The mechanisms by which these antibodies and S100A4 increase protrusive activity and promote cellular motility are not well understood, but the observation that S100A4 can inhibit the actin-activated ATPase of myosin-IIA (34) suggests that S100A4 could function as a myosin-IIA inhibitor in vivo. |
|
Publications: |
1 |
Organism: |
Mus Musculus |
+ |
LAMTOR5 | up-regulates quantity by expression
transcriptional regulation
|
S100A4 |
0.371 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-255248 |
|
|
Homo sapiens |
Breast Cancer Cell |
pmid |
sentence |
22740693 |
It suggests that HBXIP is able to activate S100A4 promoter via interacting with STAT4 in breast cancer cells, leading to the up-regulation of S100A4. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
+ |
NFAT5 | up-regulates quantity by expression
transcriptional regulation
|
S100A4 |
0.491 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-274115 |
|
|
Homo sapiens |
MDA-MB-231 Cell |
pmid |
sentence |
22266867 |
As expected, the depletion of NFAT5 decreased the S100A4 and LCN2 mRNA levels (Figure 3a). In addition, chromatin immunoprecipitation (ChIP) assay using NFAT5 antibody indicated that NFAT5 was bound to the S100A4 and LCN2 promoters (Figure 3b, Supplementary Figure S3), as expected (Chen et al., 2009). |
|
Publications: |
1 |
Organism: |
Homo Sapiens |