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Kisspeptin-10

KP-10, Metastin (45-54), Kisspeptin-10 (human), KiSS-1

Quick Stats
Studies 877
Trials 47
Score 1
2004 pubmed

Metastin and its variant forms suppress migration of pancreatic cancer cells.

Masui. Toshihiko T; Doi. Ryuichiro R; Mori. Tomohiko T; Toyoda. Eiji E; Koizumi. Masayuki M; Kami. Kazuhiro K; Ito. Daisuke D; Peiper. Stephen C SC; Broach. James R JR; Oishi. Shinya S; Niida. Ayumu A; Fujii. Nobutaka N; Imamura. Masayuki M

Key Findings

  • Pancreatic tumors have less KiSS1 (the gene for metastin) and more of its receptor hOT7T175 compared to normal tissue
  • Adding metastin to pancreatic cancer cells didn’t affect their growth but significantly reduced their ability to migrate in vitro
  • Short synthetic variants of metastin also blocked cell migration and activated ERK1 signaling

Practical Outcomes

  • At this point the findings are purely laboratory‑based and not ready for any self‑administration or protocol. More animal and human studies are needed before considering metastin or its short forms as anti‑cancer or longevity agents.

Summary

Researchers found that a natural peptide called metastin (related to kisspeptin-10) can slow down the movement of pancreatic cancer cells in lab dishes, but it doesn't stop the cells from growing. They also made shorter versions of the peptide that worked similarly. This work is still early‑stage and only done in cell cultures, so it doesn’t give any direct instructions for health‑hacking or longevity practices yet.

Abstract

Metastin, a post-translationally modified variant of KiSS1, was recently identified as an endogenous peptide agonist for a novel G-protein coupled receptor, hOT7T175 (AXOR12, GPR54). In this study, we analyzed the role of KiSS1 and hOT7T175 in both pancreatic cancer tissues and pancreatic cancer cell lines. Furthermore, we synthesized novel short variant forms of metastin and tested the inhibitory effect of those variants on in vitro cell functions that are relevant to metastasis. Pancreatic cancer tissues showed significantly lower expression of KiSS1 mRNA than normal tissues (p=0.018), while cancer tissues showed significantly higher expression of hOT7T175 mRNA than normal pancreatic tissues (p=0.027). In human pancreatic cancer cell lines, KiSS1 mRNA was highly expressed in 2 out of 6 pancreatic cancer cell lines, while hOT7T175 mRNA was expressed in all cell lines at various degrees. PANC-1 cells showed the highest expression of hOT7T175. Exogenous metastin did not suppress cell proliferation but significantly reduced the in vitro migration of PANC-1 cells (p<0.01). Metastin induced activation of ERK1 in PANC-1 and AsPC-1 cells. Finally, we synthesized 3 novel short variant forms of metastin, FM053a2TFA, FM059a2TFA, and FM052a4TFA. These metastin variants significantly suppressed the migration of PANC-1 cells and activated ERK1. These data suggest that the metastin receptor, hOT7T175, is one of the promising targets for suppression of metastasis, and that small metastin variants could be an anti-metastatic agent to pancreatic cancer.

Study Information

Provider

pubmed

Year

2004

Date

2004-02-27T00:00:00.000Z

DOI

10.1016/j.bbrc.2004.01.021