4.7 Article

Gomesin inhibits melanoma growth by manipulating key signaling cascades that control cell death and proliferation

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SCIENTIFIC REPORTS
卷 8, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41598-018-29826-4

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资金

  1. Australian Research Council [IDIPAP2015/1585, DP1095728, DP130103813]
  2. QIMR Berghofer Medical Research Institute
  3. Talent Program from the Madrid Government of Spain [T1-BIO-1854]
  4. NHMRC Career Development Fellowship [APP1131732]
  5. NHMRC Principal Research Fellowship [APP1136889]
  6. QIMR Berghofer Medical Research Institute [P2109, A15605]

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Consistent with their diverse pharmacology, peptides derived from venomous animals have been developed as drugs to treat disorders as diverse as hypertension, diabetes and chronic pain. Melanoma has a poor prognosis due in part to its metastatic capacity, warranting further development of novel targeted therapies. This prompted us to examine the anti-melanoma activity of the spider peptides gomesin (AgGom) and a gomesin-like homolog (HiGom). AgGom and HiGom dose-dependently reduced the viability and proliferation of melanoma cells whereas it had no deleterious effects on non-transformed neonatal foreskin fibroblasts. Concordantly, gomesin-treated melanoma cells showed a reduced G0/G1 cell population. AgGom and HiGom compromised proliferation of melanoma cells via activation of the p53/p21 cell cycle check-point axis and the Hippo signaling cascade, together with attenuation of the MAP kinase pathway. We show that both gomesin peptides exhibit antitumoral activity in melanoma AVATAR-zebrafish xenograft tumors and that HiGom also reduces tumour progression in a melanoma xenograft mouse model. Taken together, our data highlight the potential of gomesin for development as a novel melanoma-targeted therapy.

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