TY - JOUR
T1 - Possible therapeutic strategy involving the purine synthesis pathway regulated by itk in tongue squamous cell carcinoma
AU - Onidani, Kaoru
AU - Miura, Nami
AU - Sugiura, Yuki
AU - Abe, Yuichi
AU - Watabe, Yukio
AU - Kakuya, Takanori
AU - Mori, Taisuke
AU - Yoshimoto, Seiichi
AU - Adachi, Jun
AU - Kiyoi, Takao
AU - Kabe, Yasuaki
AU - Suematsu, Makoto
AU - Tomonaga, Takeshi
AU - Shibahara, Takahiko
AU - Honda, Kazufumi
N1 - Funding Information:
This work was funded and supported by Grants-in-Aid for Scientific Research (B) (16H05547, 19H03856) and a Challenging Exploratory Research grant (16K15833) from the Ministry of Education, Culture, Sports, Science and Technology (METX) of Japan (K.H.), and by CREST (18gm0710010h0105, 19gm0710010h0106) and Project for Cancer Research and Therapeutic Evolution (P-CREATE) (21cm0106403h0006) from the Japan Agency for Medical Research and Development (K.H.).We thank H. Shoji for providing clinical advice and T. Sakamoto for assistance with experiments. Special thanks to K. Takeuchi for secretarial assistance. M.S. was the lead of the JST ERATO Suematsu Gas Biology facility until March 2015 in support of the metabolomics infrastructure.
Publisher Copyright:
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2021/7/1
Y1 - 2021/7/1
N2 - The epidermal growth factor receptor is the only available tyrosine kinase molecular target for treating oral cancer. To improve the prognosis of tongue squamous cell carcinoma (TSCC) patients, a novel molecular target for tyrosine kinases is thus needed. We examined the expression of interleukin-2–inducible T-cell kinase (ITK) using immunohistochemistry, and the biological function of ITK was investigated using biochemical, phosphoproteomic, and metabolomic analyses. We found that ITK is overexpressed in TSCC patients with poor outcomes. The proliferation of oral cancer cell lines expressing ITK via transfection exhibited significant increases in three-dimensional culture assays and murine inoculation models with athymic male nude mice as compared with mock control cells. Suppressing the kinase activity using chemical inhibitors significantly reduced the increase in cell growth induced by ITK expression. Phosphoproteomic analyses revealed that ITK expression triggered phosphorylation of a novel tyrosine residue in trifunctional purine biosynthetic protein adenosine-3, an enzyme in the purine biosynthesis pathway. A significant increase in de novo biosynthesis of purines was observed in cells expressing ITK, which was abolished by the ITK inhibitor. ITK thus represents a potentially useful target for treating TSCC through modulation of purine biosynthesis.
AB - The epidermal growth factor receptor is the only available tyrosine kinase molecular target for treating oral cancer. To improve the prognosis of tongue squamous cell carcinoma (TSCC) patients, a novel molecular target for tyrosine kinases is thus needed. We examined the expression of interleukin-2–inducible T-cell kinase (ITK) using immunohistochemistry, and the biological function of ITK was investigated using biochemical, phosphoproteomic, and metabolomic analyses. We found that ITK is overexpressed in TSCC patients with poor outcomes. The proliferation of oral cancer cell lines expressing ITK via transfection exhibited significant increases in three-dimensional culture assays and murine inoculation models with athymic male nude mice as compared with mock control cells. Suppressing the kinase activity using chemical inhibitors significantly reduced the increase in cell growth induced by ITK expression. Phosphoproteomic analyses revealed that ITK expression triggered phosphorylation of a novel tyrosine residue in trifunctional purine biosynthetic protein adenosine-3, an enzyme in the purine biosynthesis pathway. A significant increase in de novo biosynthesis of purines was observed in cells expressing ITK, which was abolished by the ITK inhibitor. ITK thus represents a potentially useful target for treating TSCC through modulation of purine biosynthesis.
KW - IL2-inducible T-cell kinase (ITK)
KW - Tongue squamous cell carcinoma
KW - Trifunctional purine biosynthetic protein adenosine-3 (GART)
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U2 - 10.3390/cancers13133333
DO - 10.3390/cancers13133333
M3 - Article
AN - SCOPUS:85111946972
SN - 2072-6694
VL - 13
JO - Cancers
JF - Cancers
IS - 13
M1 - 3333
ER -