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:P50502 (
Hip
)
7,003
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
LKB1
is a tumor suppressor that is constitutionally mutated in a cancer-prone condition, called Peutz-Jeghers syndrome, as well as somatically inactivated in a sizeable fraction of lung and cervical neoplasms. The
LKB1
gene encodes a serine/threonine kinase that associates with the pseudokinase STRAD (STE-20-related pseudokinase) and the scaffolding protein MO25, the formation of this heterotrimeric complex promotes allosteric activation of
LKB1
. We have previously reported that the molecular chaperone heat shock protein 90 (Hsp90) binds to and stabilizes
LKB1
. Combining pharmacological studies and RNA interference approaches, we now provide evidence that the co-chaperone Cdc37 participates to the regulation of
LKB1
stability. It is known that the Hsp90-Cdc37 complex recognizes a surface within the N-terminal catalytic lobe of client protein kinases. In agreement with this finding, we found that the chaperones Hsp90 and Cdc37 interact with an
LKB1
isoform that differs in the C-terminal region, but not with a novel
LKB1
variant that lacks a portion of the kinase N-terminal lobe domain. Reconstitution of the two complexes
LKB1
-STRAD and
LKB1
-Hsp90-Cdc37 with recombinant proteins revealed that the former is catalytically active whereas the latter is inactive. Furthermore, consistent with a documented repressor function of Hsp90,
LKB1
kinase activity was transiently stimulated upon dissociation of Hsp90. Finally, disruption of the
LKB1
-Hsp90 complex favors the recruitment of both Hsp/Hsc70 and the U-box dependent E3 ubiquitin ligase CHIP (carboxyl terminus of
Hsc70-interacting protein
) that triggers
LKB1
degradation. Taken together, our results establish that the Hsp90-Cdc37 complex controls both the stability and activity of the
LKB1
kinase. This study further shows that two chaperone complexes with antagonizing activities, Hsp90-Cdc37 and Hsp/Hsc70-CHIP, finely control the cellular level of
LKB1
protein.
...
PMID:Molecular chaperone complexes with antagonizing activities regulate stability and activity of the tumor suppressor LKB1. 2289 68
Constitutive activation of the Hedgehog (Hh) signaling pathway has been implicated in the development of many human malignancies. Hh targets, such as Patched (PTCH), smoothened (SMO), Sonic hedgehog (SHH) and glioma-associated oncogene homologue 1 (GLI1), are markers of Hh signaling activation and expressed in most Hh-associated tumors. The protein kinase
LKB1
has been shown to slow proliferation and induce cell-cycle arrest in many cell lines. In this study, we observed that activated
LKB1
decreased the expression of factors related to Hh reporter activity in MDA-MB-231 breast cancer cells, including of SMO, SHH and GLI1. In contrast,
LKB1
siRNA increased the expression of these target genes. The same results were shown to inhibit the Hh factors Sufu and
Hip
. Furthermore, we also observed negative correlation between
LKB1
and glioma-associated oncogene homologue 1 (GLI1) in three breast cancer cell lines. Meanwhile,
LKB1
siRNA rescued the inhibition of cell growth by 3-Keto-N-(aminoethyl-N'-aminocaproyldihydrocinnamoyl) cyclopamine (KAAD-cyclopamine), an antagonist of the Hh element SMO, which suggests that
LKB1
acts as the downstream of SMO. In vivo,
LKB1
siRNA increased tumor growth in the mammary fat pad, and the expression levels of Hh displayed similar results in vitro. Overexpression of the
LKB1
protein in human breast cancers is associated with the expression of Hh. We found that breast carcinomas with detectable Hh had weak or undetectable expression of
LKB1
, whereas tumors that expressed high levels of
LKB1
had undetectable Hh signaling. In this study, we find that
LKB1
are negatively correlated with the expression of Hh related transcription factors. These findings suggest that
LKB1
may inhibit tumorigenesis by regulating Hh signaling in certain cancers.
...
PMID:LKB1 inhibits breast cancer partially through repressing the Hedgehog signaling pathway. 2386 64