A series of M(II) and M(IV) (M = Mo, W) alkyne adducts employing two 6-methylpyridine-2-thiolate (6-MePyS) ligands was synthesized and investigated towards the nucleophilic attack of PMe 3 on the coordinated alkynes. For this approach, 2-butyne (C 2 Me 2 ), phenylacetylene (HC 2 Ph), and diphenylacetylene (C 2 Ph 2 ) were used. For the exploration of an intramolecular attack, but-3-yn-1-ol (HCCCH 2 CH 2 OH) was coordinated to the metal centers. A nucleophilic attack of PMe 3 was observed in [W(CO)(HC 2 Ph)(6-MePyS) 2 ] yielding an η 2 -vinyl compound. Reaction of [W(CO)(C 2 Ph 2 )(6-MePyS) 2 ] with excess PMe 3 resulted in the selective coordination of one molecule of PMe 3 concomitant with decoordination of the nitrogen atom of one 6-MePyS ligand. In contrast, the W(IV) complexes did not react with PMe 3 . While no selectivity was observed in the reaction of the Mo(II) compounds with PMe 3 , alkynes in the Mo(IV) compounds were replaced by PMe 3 . Addition of Et 3 N to the but-3-yn-1-ol complexes did not lead to the anticipated formation of 2,3-dihydrofuran.