Introduction: In view of the vital implication of long noncoding RNAs in tumorigenesis, we possess the aim to determine the action effects and mechanisms of LINC01002 in prostate cancer (PCa). Methods: Expression level of LINC01002, miR-650, or filamin A (FLNA) in PCa tissues and cells was assessed using quantitative real-time PCR or Western blotting. Cell proliferative and migratory capacities were investigated by Cell Counting Kit-8 (CCK-8) and wound healing assays. Cell apoptosis was investigated by the levels of Bax and Bcl-2. Xenograft models were constructed to testify the role of LINC01002 in vivo. The anticipated binding of miR-650 to LINC01002 or FLNA was confirmed by dual-luciferase reporter or RNA binding protein immunoprecipitation assays. Results: Relatively poor expression of LINC01002 and FLNA, and high expression of miR-650 were identified in PCa tumor specimens and cells. Ectopic LINC01002 expression restrained PCa cell proliferation/migration and provoked apoptosis in vitro, and blocked solid tumor growth in Xenograft models. MiR-650 was directly targeted by LINC01002, and it also directly bound to FLNA. MiR-650 reintroduction in PCa cells overexpressing LINC01002 or FLNA partly reversed the anticancer effects of LINC01002 or FLNA overexpression, thus recovering PCa cell proliferation/migration and repressing apoptosis. Conclusion: LINC01002 deregulation was linked to PCa development. LINC01002 exerted potential anticancer effects in PCa via targeting the miR-650/FLNA pathway, which, at least in part, provided a basis for the involvement of LINC01002 as a therapeutic target in PCa.

1.
Sung
H
,
Ferlay
J
,
Siegel
RL
,
Laversanne
M
,
Soerjomataram
I
,
Jemal
A
.
Global cancer statistics 2020: GLOBOCAN estimates of incidence and mortality worldwide for 36 cancers in 185 countries
.
CA Cancer J Clin
.
2021 May
71
3
209
49
.
2.
Lee
D
,
Choi
SK
,
Park
J
,
Shim
M
,
Kim
A
,
Lee
S
.
Comparative analysis of oncologic outcomes for open versus robot-assisted radical prostatectomy in high-risk prostate cancer
.
Korean J Urol
.
2015 Aug
56
8
572
9
.
3.
Crehange
G
,
Izaguirre
A
,
Weinberg
V
,
Hsu
CC
,
Gottschalk
AR
,
Hsu
IC
.
Long-term outcomes following radiation therapy for prostate cancer patients with lymph node metastases at diagnosis treated with and without surgery
.
Am J Clin Oncol
.
2016 Apr
39
2
167
72
.
4.
Kgatle
MM
,
Kalla
AA
,
Islam
MM
,
Sathekge
M
,
Moorad
R
.
Prostate cancer: epigenetic alterations, risk factors, and therapy
.
Prostate cancer
.
2016
;
2016
:
5653862
.
5.
Perdomo
HAG
,
Zapata-Copete
JA
,
Sanchez
A
.
Molecular alterations associated with prostate cancer
.
Cent Eur J Urol
.
2018
;
71
(
2
):
168
76
.
6.
Huang
K
,
Tang
Y
.
SChLAP1 promotes prostate cancer development through interacting with EZH2 to mediate promoter methylation modification of multiple miRNAs of chromosome 5 with a DNMT3a-feedback loop
.
Cell Death Dis
.
2021 Feb 15
12
2
188
.
7.
Lu
S
,
Wang
T
,
Zhang
G
,
He
QY
.
Understanding the proteome encoded by “non-coding RNAs”: new insights into human genome
.
Sci China Life Sci
.
2020 Jul
63
7
986
95
.
8.
Bian
Z
,
Ji
W
,
Xu
B
,
Huang
W
,
Jiao
J
,
Shao
J
.
The role of long noncoding RNA SNHG7 in human cancers (Review)
.
Mol Clin Oncol
.
2020 Nov
13
5
45
.
9.
Martens-Uzunova
ES
,
Böttcher
R
,
Croce
CM
,
Jenster
G
,
Visakorpi
T
,
Calin
GA
.
Long noncoding RNA in prostate, bladder, and kidney cancer
.
Eur Urol
.
2014 Jun
65
6
1140
51
.
10.
Wang
M
,
Zhou
L
,
Yu
F
,
Zhang
Y
,
Li
P
,
Wang
K
.
The functional roles of exosomal long non-coding RNAs in cancer
.
Cell Mol Life Sci
.
2019 Jun
76
11
2059
76
.
11.
Sun
F
,
Wu
K
,
Yao
Z
,
Mu
X
,
Zheng
Z
,
Sun
M
.
Long noncoding RNA LINC00963 induces NOP2 expression by sponging tumor suppressor miR-542-3p to promote metastasis in prostate cancer
.
Aging
.
2020 Jun 17
12
12
11500
16
.
12.
Liu
Y
,
Yang
B
,
Su
Y
,
Xiang
Q
,
Li
Q
.
Downregulation of long noncoding RNA LINC00683 associated with unfavorable prognosis in prostate cancer based on TCGA
.
J Cell Biochem
.
2019 Aug
120
8
14165
74
.
13.
Tang
Z
,
Li
C
,
Kang
B
,
Gao
G
,
Li
C
,
Zhang
Z
.
GEPIA: a web server for cancer and normal gene expression profiling and interactive analyses
.
Nucleic Acids Res
.
2017 Jul 3
45
W1
W98
102
.
14.
Huang
Y
,
Wang
X
,
Zheng
Y
,
Chen
W
,
Zheng
Y
,
Li
G
.
Construction of an mRNA-miRNA-lncRNA network prognostic for triple-negative breast cancer
.
Aging
.
2021 Jan 3
13
1
1153
75
.
15.
Paraskevopoulou
MD
,
Vlachos
IS
,
Karagkouni
D
,
Georgakilas
G
,
Kanellos
I
,
Vergoulis
T
.
DIANA-LncBase v2: indexing microRNA targets on non-coding transcripts
.
Nucleic Acids Res
.
2016 Jan 4
44
D1
D231
8
.
16.
Orlandella
FM
,
Mariniello
RM
,
Iervolino
PLC
,
Imperlini
E
,
Mandola
A
,
Verde
A
.
miR-650 promotes motility of anaplastic thyroid cancer cells by targeting PPP2CA
.
Endocrine
.
2019 Sep
65
3
582
94
.
17.
Tang
X
,
Ding
Y
,
Wang
X
,
Wang
X
,
Zhao
L
,
Bi
H
.
miR-650 promotes non-small cell lung cancer cell proliferation and invasion by targeting ING4 through Wnt-1/β-catenin pathway
.
Oncol Lett
.
2019 Nov
18
5
4621
8
.
18.
Jin
S
,
Li
X
,
Dai
Y
,
Li
C
,
Wang
D
.
NF-κB-mediated miR-650 plays oncogenic roles and activates AKT/ERK/NF-κB pathways by targeting RERG in glioma cells
.
Cell Oncol
.
2020 Dec
43
6
1035
48
.
19.
Agarwal
V
,
Bell
GW
,
Nam
JW
,
Bartel
DP
.
Predicting effective microRNA target sites in mammalian mRNAs
.
Elife
.
2015 Aug 12
4
e05005
.
20.
Wang
K
,
Zhu
TN
,
Zhao
RJ
.
Filamin A regulates EGFR/ERK/Akt signaling and affects colorectal cancer cell growth and migration
.
Mol Med Rep
.
2019 Oct
20
4
3671
8
.
21.
Wang
YZ
,
Wong
YC
.
Oncogenes and tumor suppressor genes in prostate cancer: a review
.
Urol Oncol
.
1997 Mar–Apr
3
2
41
6
.
22.
Shang
Z
,
Yu
J
,
Sun
L
,
Tian
J
,
Zhu
S
,
Zhang
B
.
LncRNA PCAT1 activates AKT and NF-κB signaling in castration-resistant prostate cancer by regulating the PHLPP/FKBP51/IKKα complex
.
Nucleic Acids Res
.
2019 May 7
47
8
4211
25
.
23.
Wu
M
,
Huang
Y
,
Chen
T
,
Wang
W
,
Yang
S
,
Ye
Z
.
LncRNA MEG3 inhibits the progression of prostate cancer by modulating miR-9-5p/QKI-5 axis
.
J Cell Mol Med
.
2019 Jan
23
1
29
38
.
24.
Zhang
Y
,
Guo
S
,
Wang
S
,
Li
X
,
Hou
D
,
Li
H
.
LncRNA OIP5-AS1 inhibits ferroptosis in prostate cancer with long-term cadmium exposure through miR-128-3p/SLC7A11 signaling
.
Ecotoxicol Environ Saf
.
2021 Sep 1
220
112376
.
25.
Tang
Q
,
Li
Z
,
Han
W
,
Cheng
S
,
Wang
Y
.
High expression of lncRNA SNHG1 in prostate cancer patients and inhibition of SNHG1 suppresses cell proliferation and promotes apoptosis
.
Indian J Pathol Microbiol
.
2020 Oct–Dec
63
4
575
80
.
26.
Lang
C
,
Yin
C
,
Lin
K
,
Li
Y
,
Yang
Q
,
Wu
Z
.
m(6 A modification of lncRNA PCAT6 promotes bone metastasis in prostate cancer through IGF2BP2-mediated IGF1R mRNA stabilization
.
Clin Transl Med
.
2021 Jun
11
6
e426
.
27.
Liao
B
,
Chen
S
,
Li
Y
,
Yang
Z
,
Yang
Y
,
Deng
X
.
LncRNA BLACAT1 promotes proliferation, migration and invasion of prostate cancer cells via regulating miR-29a-3p/DVL3 Axis
.
Technol Cancer Res Treat
.
2021 Jan–Dec
20
1533033820972342
.
28.
Saha
S
,
Kiran
M
,
Kuscu
C
,
Chatrath
A
,
Wotton
D
,
Mayo
MW
.
Long noncoding RNA DRAIC inhibits prostate cancer progression by interacting with IKK to inhibit NF-κB activation
.
Cancer Res
.
2020 Mar 1
80
5
950
63
.
29.
Cheng
G
,
Song
Z
,
Liu
Y
,
Xiao
H
,
Ruan
H
,
Cao
Q
.
Long noncoding RNA SNHG12 indicates the prognosis of prostate cancer and accelerates tumorigenesis via sponging miR-133b
.
J Cell Physiol
.
2020 Feb
235
2
1235
46
.
30.
Li
DS
,
Ainiwaer
JL
,
Sheyhiding
I
,
Zhang
Z
,
Zhang
LW
.
Identification of key long non-coding RNAs as competing endogenous RNAs for miRNA-mRNA in lung adenocarcinoma
.
Eur Rev Med Pharmacol Sci
.
2016 Jun
20
11
2285
95
.
31.
Edlich
F
.
BCL-2 proteins and apoptosis: recent insights and unknowns
.
Biochem Biophys Res Commun
.
2018 May 27
500
1
26
34
.
32.
Yan
K
,
Hou
L
,
Liu
T
,
Jiao
W
,
Ma
Q
,
Fang
Z
.
lncRNA OGFRP1 functions as a ceRNA to promote the progression of prostate cancer by regulating SARM1 level via miR-124-3p
.
Aging
.
2020 May 19
12
10
8880
92
.
33.
Hao
H
,
Chen
H
,
Xie
L
,
Liu
H
,
Wang
D
.
LncRNA KCNQ1OT1 promotes proliferation, invasion and metastasis of prostate cancer by regulating miR-211-5p/CHI3L1 pathway
.
Onco Targets Ther
.
2021
;
14
:
1659
71
.
34.
Jiang
Y
,
Zhao
H
,
Chen
Y
,
Li
K
,
Li
T
,
Chen
J
.
Exosomal long noncoding RNA HOXD-AS1 promotes prostate cancer metastasis via miR-361-5p/FOXM1 axis
.
Cell Death Dis
.
2021 Dec 4
12
12
1129
.
35.
Zuo
ZH
,
Yu
YP
,
Ding
Y
,
Liu
S
,
Martin
A
,
Tseng
G
.
Oncogenic activity of miR-650 in prostate cancer is mediated by suppression of CSR1 expression
.
Am J Pathol
.
2015 Jul
185
7
1991
9
.
36.
Han
LL
,
Yin
XR
,
Zhang
SQ
.
miR-650 promotes the metastasis and epithelial-mesenchymal transition of hepatocellular carcinoma by directly inhibiting LATS2 expression
.
Cell Physiol Biochem
.
2018
;
51
(
3
):
1179
92
.
37.
Tian
ZQ
,
Shi
JW
,
Wang
XR
,
Li
Z
,
Wang
GY
.
New cancer suppressor gene for colorectal adenocarcinoma: filamin A
.
World J Gastroenterol
.
2015 Feb 21
21
7
2199
205
.
38.
Xu
C
,
Yu
X
,
Zhu
Y
,
Cai
Z
,
Yu
L
,
Lin
Y
.
Overexpression of calpain-1 predicts poor outcome in patients with colorectal cancer and promotes tumor cell progression associated with downregulation of FLNA
.
Oncol Rep
.
2019 Jun
41
6
3424
34
.
39.
Zhang
Y
,
Zhu
T
,
Liu
J
,
Liu
J
,
Gao
D
,
Su
T
.
FLNa negatively regulated proliferation and metastasis in lung adenocarcinoma A549 cells via suppression of EGFR
.
Acta Biochim Biophys Sin
.
2018 Feb 1
50
2
164
70
.
40.
Guo
Y
,
Li
M
,
Bai
G
,
Li
X
,
Sun
Z
,
Yang
J
.
Filamin A inhibits tumor progression through regulating BRCA1 expression in human breast cancer
.
Oncol Lett
.
2018 Nov
16
5
6261
6
.
41.
Liu
S
,
Wang
W
,
Zhao
Y
,
Liang
K
,
Huang
Y
.
Identification of potential key genes for pathogenesis and prognosis in prostate cancer by integrated analysis of gene expression profiles and the cancer genome atlas
.
Front Oncol
.
2020
;
10
:
809
.
42.
Narain
NR
,
Diers
AR
,
Lee
A
,
Lao
S
,
Chan
JY
,
Schofield
S
.
Identification of Filamin-A and -B as potential biomarkers for prostate cancer
.
Future Sci OA
.
2017 Mar
3
1
FSO161
.
43.
Sun
GG
,
Lu
YF
,
Zhang
J
,
Hu
WN
.
Filamin A regulates MMP-9 expression and suppresses prostate cancer cell migration and invasion
.
Tumour Biol
.
2014 Apr
35
4
3819
26
.
44.
Katzenwadel
A
,
Wolf
P
.
Androgen deprivation of prostate cancer: leading to a therapeutic dead end
.
Cancer Lett
.
2015 Oct 10
367
1
12
7
.
You do not currently have access to this content.