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PMID |
Sentence |
1 |
22532801
|
We show restriction of RVFV both by AMPK and its upstream activator LKB1, indicating an antiviral role for this signaling pathway.
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2 |
22532801
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Lastly, we found that this pathway plays a broad role in antiviral defense since additional viruses from disparate families were also restricted by AMPK and LKB1.
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3 |
22532801
|
We show restriction of RVFV both by AMPK and its upstream activator LKB1, indicating an antiviral role for this signaling pathway.
|
4 |
22532801
|
Lastly, we found that this pathway plays a broad role in antiviral defense since additional viruses from disparate families were also restricted by AMPK and LKB1.
|
5 |
24794706
|
Loss of Lkb1 and Pten leads to lung squamous cell carcinoma with elevated PD-L1 expression.
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6 |
24794706
|
We demonstrate that biallelic inactivation of Lkb1 and Pten in the mouse lung leads to SCC that recapitulates the histology, gene expression, and microenvironment found in human disease.
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7 |
24794706
|
Lkb1;Pten null (LP) tumors expressed the squamous markers KRT5, p63 and SOX2, and transcriptionally resembled the basal subtype of human SCC.
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8 |
24794706
|
SCA1(+)NGFR(+) fractions were enriched for tumor-propagating cells (TPCs) that could serially transplant the disease in orthotopic assays.
|
9 |
24794706
|
Loss of Lkb1 and Pten leads to lung squamous cell carcinoma with elevated PD-L1 expression.
|
10 |
24794706
|
We demonstrate that biallelic inactivation of Lkb1 and Pten in the mouse lung leads to SCC that recapitulates the histology, gene expression, and microenvironment found in human disease.
|
11 |
24794706
|
Lkb1;Pten null (LP) tumors expressed the squamous markers KRT5, p63 and SOX2, and transcriptionally resembled the basal subtype of human SCC.
|
12 |
24794706
|
SCA1(+)NGFR(+) fractions were enriched for tumor-propagating cells (TPCs) that could serially transplant the disease in orthotopic assays.
|
13 |
24794706
|
Loss of Lkb1 and Pten leads to lung squamous cell carcinoma with elevated PD-L1 expression.
|
14 |
24794706
|
We demonstrate that biallelic inactivation of Lkb1 and Pten in the mouse lung leads to SCC that recapitulates the histology, gene expression, and microenvironment found in human disease.
|
15 |
24794706
|
Lkb1;Pten null (LP) tumors expressed the squamous markers KRT5, p63 and SOX2, and transcriptionally resembled the basal subtype of human SCC.
|
16 |
24794706
|
SCA1(+)NGFR(+) fractions were enriched for tumor-propagating cells (TPCs) that could serially transplant the disease in orthotopic assays.
|