MEDIATION OF NGF-STIMULATED EXTRACELLULAR-MATRIX INVASION BY THE HUMAN-MELANOMA LOW-AFFINITY P75 NEUROTROPHIN RECEPTOR - MELANOMA P75 FUNCTIONS INDEPENDENTLY OF TRKA
Jl. Herrmann et al., MEDIATION OF NGF-STIMULATED EXTRACELLULAR-MATRIX INVASION BY THE HUMAN-MELANOMA LOW-AFFINITY P75 NEUROTROPHIN RECEPTOR - MELANOMA P75 FUNCTIONS INDEPENDENTLY OF TRKA, Molecular biology of the cell, 4(11), 1993, pp. 1205-1216
Although overexpression of the low-affinity p75 neurotrophin receptor
(p75(NTR)) is, frequently associated with advanced stages of human mel
anoma progression, the functional significance of this finding is unkn
own. We examined whether the degree of cell surface expression of p75(
NTR) in, human melanoma cell variants determines their extent of invas
ion stimulated by nerve growth factor (NGF). Treatment of MeWo melanom
a cells or a metastatic spontaneous wheat germ agglutinin-resistant va
riant subline (70W) of MeWo cells with 2.5S NGF resulted in a dose-dep
endent enhancement of invasion through a reconstituted basement membra
ne. This effect was most pronounced with the 70W subline that exhibits
brain-metastasizing potential in nude mice but was not found with a p
oorly metastatic MeWo variant subline (3S5). The expression of p75(NTR
) as determined by Northern blotting and immunoprecipitation analysis
of I-125-labeled cell surface proteins correlated with NGF-stimulated
invasion. The MeWo melanoma sublines used in this study did not expres
s p140(proto-trkA) mRNA or any p140(proto-trkA) variant transcripts in
cluding p70(trkA) as determined by Northern analysis and RT-PCR analys
is. Thus, these melanoma cells would not be expected to form functiona
l p75-p140 heterodimers or p140-p140 homodimers capable of transducing
an NGF-generated signal to p140(proto-trkA) cytoplasmic substrates. T
hese cells did express authentic p145(trkC) transcripts. However, NGF
did not catalytically activate p145(trkC) receptors via increased tyro
sine phosphorylation as would be expected if p145(trkC) participated i
n the signaling established by NGF. Furthermore, a NGF-stimulated puri
ne-analogue-sensitive kinase activity was found to coimmunoprecipitate
with p75(NTR). This p75(NTR)-associated kinase may coordinate initial
signaling events evoked by p75(NTR) ligand interaction. Addition of 2
.5S NGF, at concentrations that should saturate cell surface p75(NTR)
to matrix-adherent cultures of human MeWo and 70W but not 3S5 melanoma
cells suppressed the expression of 92-kDa type IV collagenase and sti
mulated the production of 72-kDa type IV collagenase in its fully acti
ve 68-kDa form. In the absence of p140(proto-trkA), the matrix-depende
nt effects of NGF on metalloproteinase expression of brain-metastatic
70W melanoma cells suggest a signaling role for the low-affinity melan
oma p75(NTR) receptor and its associated purine-analogue-sensitive kin
ase in signaling enhanced matrix penetration of NGF-rich stromal micro
environments such as the brain.