As the key regulatory factor in the protein kinase pathways, the up-regulation of SHP2 expression and activating mutations can lead to the occurrence of various cancers.Targeted on two allosteric sites of SHP2E76A ("tunnel" type and "latch" type), this project performed docking-based inhibitor virtual screening and explored the binding mechanisms.Finally, 9 and 5 hit compounds were obtained at allosteric sites 1 and 2, resp.At allosteric site 1, Lig1 performs the best binding affinity.It has a rigid three-membered N-heterocyclic parent nucleus, and Leu216, Glu250, Arg111, and Thr253 are the key residues to the interaction.At allosteric site 2, Comp1 performs the highest affinity due to the particular spindle type structure, and Arg265 and Ala76 are the two residues that contributed most to the binding free energy.Thereinto, the electroneg. Arg265 is helpful in avoiding off-target through the electrostatic interactions, and Ala76 contributed to the binding mainly through ver der Waals interactions, which reminds us of a novel strategy for the specific allosteric inhibitor design.This work provides bran-new skeleton structures for SHP2E76A allosteric inhibitors, which would be greatly helpful for the further drug design and synthesis, laying a solid theor. basis for its development.