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Query: UMLS:C0376358 (
prostate cancer
)
59,338
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Kallikreins are a subgroup of serine proteases with diverse physiological functions. Growing evidence suggests that many kallikreins are implicated in carcinogenesis. By using molecular cloning techniques, we identified a new human kallikrein gene, tentatively named
KLK15
(for kallikrein 15 gene). This new gene maps to chromosome 19q13.4 and is located between the KLK1 and KLK3 genes.
KLK15
is formed of five coding exons and four introns, and shows structural similarity to other kallikreins and kallikrein-like genes.
KLK15
has three alternatively spliced forms and is primarily expressed in the thyroid gland and to a lower extent in the prostate, salivary, and adrenal glands and in the colon testis and kidney. Our preliminary results indicate that the expression of
KLK15
is up-regulated by steroid hormones in the LNCaP
prostate cancer
cell line. The
KLK15
gene is also up-regulated, at the mRNA level, in
prostate cancer
in comparison to normal prostatic tissue.
KLK15
up-regulation was found to be associated with more aggressive forms of
prostate cancer
. This newly discovered gene has the potential of being used as a diagnostic and/or prognostic marker for
prostate cancer
.
...
PMID:Molecular cloning of the human kallikrein 15 gene (KLK15). Up-regulation in prostate cancer. 1101 Sep 66
Many kallikrein genes were found to be differentially expressed in various malignancies, and prostate specific antigen (encoded by the KLK3 gene) is the best tumour marker for
prostate cancer
. Prostate specific antigen has recently been shown to be an independent favourable prognostic marker for breast cancer.
KLK15
is newly discovered kallikrein gene that is located adjacent to KLK3 on chromosome 19q13.4.
KLK15
has 41% similarity to KLK3 and the encoded protein, hK15, can activate pro-prostate specific antigen. We studied the expression of
KLK15
by real-time quantitative reverse transcriptase-polymerase chain reaction in 202 tissues from patients with breast carcinoma of various stages, grades and histological types.
KLK15
expression was found to be a significant predictor of progression-free survival (hazard ratio of 0.41 and P=0.011) and overall survival (hazard ratio of 0.34 and P=0.009). When all other known confounders were controlled in the multivariate analysis,
KLK15
retained its prognostic significance. Higher concentrations of
KLK15
mRNA were found more frequently in node negative patients (P=0.042). No association was found between
KLK15
expression and any other clinicopathological variable. Further,
KLK15
is an independent prognostic factor of progression-free survival and overall survival in the subgroup of patients with lower grade and those with oestrogen receptor and progesterone receptor negative tumours in both univariate and multivariate analysis.
KLK15
levels of expression were slightly higher (although not statistically significant) in the oestrogen receptor negative and progesterone receptor negative subgroups of patients.
KLK15
is up-regulated by androgens in breast cancer cell lines. Time-course and blocking experiments suggest that this regulation is mediated through the androgen receptor.
...
PMID:The androgen-regulated gene human kallikrein 15 (KLK15) is an independent and favourable prognostic marker for breast cancer. 1243 20
Human tissue kallikrein genes, located on the long arm of chromosome 19, are a subgroup of the serine protease family of proteolytic enzymes. Initially thought to consist of three members, the human kallikrein locus has now been extended and includes 15 tandemly located genes. These genes, and their protein products, share a high degree of homology and are expressed in a wide array of tissues, mainly those that are under steroid hormone control. PSA (hK3) is one of the human kallikreins, and is the most useful tumor marker for
prostate cancer
screening, diagnosis, prognosis and monitoring. hK2, another prostate-specific kallikrein, has also been proposed as a complementary
prostate cancer
biomarker. In the past 5 years, the newly discovered kallikreins (KLK4-
KLK15
) have been associated with several types of cancer. For example, hK4, hK5, hK6, hK7, hK8, hK10, hK11, hK13 and hK14 are emerging biomarkers for ovarian, breast, prostate and testicular cancer. New evidence raises the possibility that some kallikreins are directly involved with cancer progression. We here review the evidence linking kallikreins and cancer and their applicability as novel biomarkers for cancer diagnosis and management.
...
PMID:Human tissue kallikrein gene family: applications in cancer. 1591 Oct 97
Single nucleotide polymorphisms (SNPs) in the KLK3 gene on chromosome 19q13.33 are associated with serum prostate-specific antigen (PSA) levels. Recent genome wide association studies of
prostate cancer
have yielded conflicting results for association of the same SNPs with
prostate cancer
risk. Since the KLK3 gene encodes the PSA protein that forms the basis for a widely used screening test for
prostate cancer
, it is critical to fully characterize genetic variation in this region and assess its relationship with the risk of
prostate cancer
. We have conducted a next-generation sequence analysis in 78 individuals of European ancestry to characterize common (minor allele frequency, MAF >1%) genetic variation in a 56 kb region on chromosome 19q13.33 centered on the KLK3 gene (chr19:56,019,829-56,076,043 bps). We identified 555 polymorphic loci in the process including 116 novel SNPs and 182 novel insertion/deletion polymorphisms (indels). Based on tagging analysis, 144 loci are necessary to tag the region at an r (2) threshold of 0.8 and MAF of 1% or higher, while 86 loci are required to tag the region at an r (2) threshold of 0.8 and MAF >5%. Our sequence data augments coverage by 35 and 78% as compared to variants in dbSNP and HapMap, respectively. We observed six non-synonymous amino acid or frame shift changes in the KLK3 gene and three changes in each of the neighboring genes,
KLK15
and KLK2. Our study has generated a detailed map of common genetic variation in the genomic region surrounding the KLK3 gene, which should be useful for fine-mapping the association signal as well as determining the contribution of this locus to
prostate cancer
risk and/or regulation of PSA expression.
...
PMID:A comprehensive resequence analysis of the KLK15-KLK3-KLK2 locus on chromosome 19q13.33. 1982 74
Prostate cancer
is the most commonly diagnosed malignancy in male populations in the Western world. The
KLK15
gene, the newest member of the kallikrein family, is expressed in the prostate gland. The purpose of this study is the expression analysis and the clinical evaluation of the
KLK15
mRNA spliced variants in
prostate cancer
(CaP) and benign prostatic hyperplasia (BPH) patients. Total RNA was isolated from 104 CaP and BPH tissue specimens. After testing the quality of the RNA, cDNA was produced by reverse transcription, and PCR was performed for the amplification of the
KLK15
mRNA transcripts. GAPDH and HPRT genes were used as endogenous controls Our data revealed that mRNA spliced variants of
KLK15
were differentially expressed in prostate tissue specimens. Analysis of data showed a statistically significant (P < 0.001) increase in the frequency of overexpression of
KLK15
transcripts encoding for both the active isoform and for the isoform 3 in CaP compared to BPH samples. Furthermore,
KLK15
transcripts were found to be highly expressed in more aggressive tumors (P = 0.017). These results suggest that
KLK15
expression analysis could be employed as a valuable tool for the discrimination between BPH and CaP tissue specimens and as an unfavorable prognostic marker for
prostate cancer
.
...
PMID:Expression analysis and study of the KLK15 mRNA splice variants in prostate cancer and benign prostatic hyperplasia. 2006 63
In search of biomarkers for
prostate cancer
, we evaluated the expression of the human kallikrein-related peptidase
KLK15
in samples of prostatic adenocarcinomas from radical prostatectomies. Twenty-five pairs of cancerous and adjacent normal prostatic tissue were selected by laser capture microdissection. The tissue was used for quantification of
KLK15
mRNA by reverse-transcriptase polymerase chain reaction. Immunohistochemical expression of the KLK15 protein in 193 samples of prostatic adenocarcinoma was analysed in relation to clinicopathological parameters of the patients and disease progression. Expression of
KLK15
correlated with the pathological tumour stage and Gleason score of the cases, both at mRNA and at protein level. While mRNA expression in the tumour was elevated, the protein level of
KLK15
was reduced compared with adjacent normal tissue and to prostatic intraepithelial neoplasia. Univariate Kaplan-Meier analysis showed a significant association of dichotomised
KLK15
levels with disease progression defined by prostate-specific antigen relapse (p = 0.001). Multivariate analysis according to the Cox proportional hazards regression model identified dichotomised
KLK15
expression, corrected for the patient parameters age, preoperative prostate-specific antigen level, pathological tumour stage, Gleason score and surgical margin status, as an independent prognostic factor for poor outcome (inclusion model, hazard ratio 1.802, 95% confidence interval 1.037-3.132, p = 0.037). We suggest
KLK15
as a new independent tumour marker for patients at risk for disease progression after radical prostatectomy.
...
PMID:KLK15 is a prognostic marker for progression-free survival in patients with radical prostatectomy. 2047 23
The kallikrein gene family (KLK1-
KLK15
) is the largest contiguous group of protease genes within the human genome and is associated with both risk and outcome of cancer and other diseases. We searched for copy number variants in all KLK genes using quantitative PCR analysis and analysis of inheritance patterns of single nucleotide polymorphisms. Two deletions were identified: one 2235-bp deletion in KLK9 present in 1.2% of alleles, and one 3394-bp deletion in
KLK15
present in 4.0% of alleles. Each deletion eliminated one complete exon and created out-of-frame coding that eliminated the catalytic triad of the resulting truncated gene product, which therefore likely is a non-functional protein. Deletion breakpoints identified by DNA sequencing located the KLK9 deletion breakpoint to a long interspersed element (LINE) repeated sequence, while the deletion in
KLK15
is located in a single copy sequence. To search for an association between each deletion and risk of
prostate cancer
(PC), we analyzed a cohort of 667 biopsied men (266 PC cases and 401 men with no evidence of PC at biopsy) using short deletion-specific PCR assays. There was no association between evidence of PC in this cohort and the presence of either gene deletion. Haplotyping revealed a single origin of each deletion, with most recent common ancestor estimates of 3000-8000 and 6000-14 000 years for the deletions in KLK9 and
KLK15
, respectively. The presence of the deletions on the same haplotypes in 1000 Genomes data of both European and African populations indicate an early origin of both deletions. The old age in combination with homozygous presence of loss-of-function variants suggests that some kallikrein-related peptidases have non-essential functions.
...
PMID:Copy number variants in the kallikrein gene cluster. 2389 13
Human tissue kallikrein (KLK1) and is related peptidases (KLK2-
KLK15
) are a family of 15 homologous serine proteases, participating in numerous processes of normal physiology. Considering the irreversible impact of proteases on substrates, the tissue-dependent regulation of KLKs activity becomes crucial for their beneficial role in normal homeostasis. Moreover, KLKs expression is strongly regulated at the transcriptional and post-transcriptional level by steroid hormones and miRNAs, respectively. Deregulation of KLKs expression, secretion and/or activation has been observed in most human malignancies and there is a trend to identify their role in the multi-complex process of cancer development. The identification of extracellular matrix (ECM) proteins, cell-surface receptors, cell-surface adhesion molecules and growth factors among substrates, clearly support the driving role of KLK abnormal expression and function during tumorigenesis and cancer progression. KLKs have also clinical utility in cancer diagnosis and monitoring like KLK 3 (PSA) in
prostate cancer
. In this review, we tried to summarize the existing literature about the role of KLKs in gastrointestinal cancers as well as to emphasize their clinical significance for patients' prognosis.
...
PMID:Kallikrein-related peptidases in cancers of gastrointestinal tract: an inside view of their role and clinical significance. 2465 43
MicroRNAs (miRNAs) are short RNA nucleotides that negatively regulate their target genes. They are differentially expressed in
prostate cancer
. Kallikreins are genes that encode serine proteases and are dysregulated in cancer. We elucidated a miRNA-kallikrein network that can be involved in
prostate cancer
progression. Target prediction identified 23 miRNAs that are dysregulated between high and low risk biochemical failure and are predicted to target five kallikreins linked to
prostate cancer
; KLK2, KLK3, KLK4, KLK14 and
KLK15
. We also identified 14 miRNAs that are differentially expressed between Gleason grades and are predicted to target these kallikreins. This demonstrates that kallikreins are downstream effectors through which miRNAs influence tumor progression. We show, through in-silico and experimental analysis, that miR-378/422a and its gene targets PIK3CG, GRB2, AKT3, KLK4 and KLK14 form an integrated circuit in
prostate cancer
. Our analysis shows that a minisatellite sequence in the kallikrein locus consists of a number of microsatellite repeats that represent predicted miRNA response elements. A number of kallikrein and non-kallikrein
prostate cancer
-related genes share these microsatellite repeats. We validated some of these interactions in
prostate cancer
cell lines. Finally, we provide preliminary evidence on the presence of a miRNA-mediated cross-talk between kallikreins, including a kallikrein pseudogene.
...
PMID:Kallikreins are involved in an miRNA network that contributes to prostate cancer progression. 2515 83