Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Query: UNIPROT:P04637 (
p53
)
77,613
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The XPO1 inhibitor selinexor was recently approved in relapsed/refractory
DLBCL
patients but only demonstrated modest anti-
DLBCL
efficacy, prompting us to investigate the prognostic effect of XPO1 in
DLBCL
patients and the rational combination therapies in high-risk
DLBCL
. High XPO1 expression (XPO1
high
) showed significant adverse prognostic impact in 544 studied
DLBCL
patients, especially in those with BCL2 overexpression. Therapeutic study in 30
DLBCL
cell lines with various molecular and genetic background found robust cytotoxicity of selinexor, especially in cells with BCL2-rearranged (BCL2-R
+
)
DLBCL
or high-grade B-cell lymphoma with MYC/BCL2 double-hit (HGBCL-DH). However, expression of mutant (Mut)
p53
significantly reduced the cytotoxicity of selinexor in overall cell lines and the BCL2-R and HGBCL-DH subsets, consistent with the favorable impact of XPO1
high
observed in Mut-
p53
-expressing patients. The therapeutic effect of selinexor in HGBCL-DH cells was significantly enhanced when combined with a BET inhibitor INCB057643, overcoming the drug resistance in Mut-
p53
-expressing cells. Collectively, these data suggest that XPO1 worsens the survival of
DLBCL
patients with unfavorable prognostic factors such as BCL2 overexpression and double-hit, in line with the higher efficacy of selinexor demonstrated in BCL2-R
+
DLBCL
and HGBCL-DH cell lines. Expression of Mut-
p53
confers resistance to selinexor treatment, which can be overcome by combined INCB057643 treatment in HGBCL-DH cells. This study provides insight into the XPO1 significance and selinexor efficacy in
DLBCL
, important for developing combination therapy for relapsed/refractory
DLBCL
and HGBCL-DH.
...
PMID:XPO1 expression worsens the prognosis of unfavorable DLBCL that can be effectively targeted by selinexor in the absence of mutant p53. 3314 42
<< Previous
1
2
3
4