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glutathione ten-membered ring Tubulin glutamylation: a key regulator of flagella, cilia, centrosomes, and disease pathways | Journal of Biomedical Science Potential of Triazines as Antidiabetic

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Cardiovasc Res 36:276281 Masaki I, Yonemitsu Y, Yamashita A, Sata S, Tanii M, Komori K, Nakagawa K, Hou X, Nagai Y, Hasegawa M et al (2002) Angiogenic gene therapy for experimental critical limb ischemia: acceleration of limb loss by overexpression of vascular endothelial growth factor 165 but not of fibroblast growth factor-2

glutathione ten-membered ring Tubulin glutamylation: a key regulator of flagella, cilia, centrosomes, and disease pathways | Journal of Biomedical Science Potential of Triazines as Antidiabetic

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glutathione ten-membered ring Tubulin glutamylation: a key regulator of flagella, cilia, centrosomes, and disease pathways | Journal of Biomedical Science Potential of Triazines as Antidiabetic

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glutathione ten-membered ring Tubulin glutamylation: a key regulator of flagella, cilia, centrosomes, and disease pathways | Journal of Biomedical Science Potential of Triazines as Antidiabetic

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glutathione ten-membered ring Tubulin glutamylation: a key regulator of flagella, cilia, centrosomes, and disease pathways | Journal of Biomedical Science Potential of Triazines as Antidiabetic

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