We focused on Slit-Robo Rho-GTPase-activating protein 2 (SRGAP2), one of the few genes specifically duplicated in humans, and the only one implicated at synapses so far. Using the duplications of SRGAP2 as a thread, and a multiscale approach ranging from the molecule to the circuit, our work uncovered fundamental mechanisms underlying the specification of cortical circuits and novel forms of synaptic plasticity. We developed a methodology for the ultrastructural investigation of specific populations of synapses in intact circuits with single cell resolution. We demonstrated that the human-specific gene SRGAP2C extends the period of synaptic maturation at the core of synapses, by slowing the assembly of postsynaptic scaffolds and enhancing the accumulation of proteins that limit synaptic activity. Our work highlighted interactions between human specific genes and genes mutated in neurodevelopmental disorders, which important consequences for our understanding of the evolution of the human brain and its dysfunctions in neurodisorders. Together, our results were published in three major articles and two collaborative articles. We also published three review articles.