Peng, F, Sinjab, A, Dai, Y, Treekitkarnmongkol, W, Yang, S, Gomez Bolanos, L, Zhou, T, Chen, M, Serrano, A, Krishna, A, Karimi, N, Sharma, M, Basi, A, Pei, G, Liao, J, Liu, Y, Feng, J, Rahal, Z, Liu, Y, Jiang, J, Yu, K, Noun, T, Liu, Y, Khan, KB, Cho, KS, Chen, J, Solis Soto, LM, Mazzilli, SA, Dubinett, SM, Cascone, T, Spira, A, Swisher, SG , Jimbo, N, Hayashi, T, Kishikawa, S, Takamochi, K, Itoh, T, Yao, T, Suzuki, K, Kalhor, N, Wistuba, II, Li, M, Moghaddam, SM, Fujimoto, J, Burks, JK, Myers, JN, Akdemir, KC, Wang, L, Kadara, HN
These effects were aggravated by PRMT1 overexpression but attenuated by PRMT1 knockdown (Fig
Its working mechanism is allosteric facilitation of HGF/c-Met signaling: Dihexa binds HGF with high affinity (reported K d ~65 pM in the original work) and is proposed to potentiate HGF dimerization and c-Met phosphorylation at subthreshold endogenous HGF concentrations
Unmixed lyophilized powder travels much better than a reconstituted vial
Wang J, Li X, Geng J, Wang R, Ma G, Liu P
Physiology and function of the tight junction