Department of Biology, Stanford University, Stanford, CA 94035.
Department of Neurobiology, Stanford University, Stanford, CA 94035.
Proc Natl Acad Sci U S A. 2022 Jun 7;119(23):e2203965119. doi: 10.1073/pnas.2203965119. Epub 2022 Jun 1.
During developmental critical periods, circuits are sculpted by a process of activity-dependent competition. The molecular machinery involved in regulating the complex process of responding to different levels of activity is now beginning to be identified. Here, we show that the nonclassical major histocompatibility class I (MHCI) molecule Qa-1 is expressed in the healthy brain in layer 6 corticothalamic neurons. In the visual cortex, Qa-1 expression begins during the critical period for ocular dominance (OD) plasticity and is regulated by neuronal activity, suggesting a role in regulating activity-dependent competition. Indeed, in mice lacking Qa-1, OD plasticity is perturbed. Moreover, signaling through CD94/NKG2, a known cognate Qa-1 heterodimeric receptor in the immune system, is implicated: selectively targeting this interaction phenocopies the plasticity perturbation observed in Qa-1 knockouts. In the cortex, CD94/NKG2 is expressed by microglial cells, which undergo activity-dependent changes in their morphology in a Qa-1–dependent manner. Our study thus reveals a neuron–microglial interaction dependent upon a nonclassical MHCI molecule expressed in L6 neurons, which regulates plasticity in the visual cortex. These results also point to an unexpected function for the Qa-1/HLA-E (ligand) and CD94/NKG2 (receptor) interaction in the nervous system, in addition to that described in the immune system.
在发育关键期,通过依赖于活动的竞争过程来塑造回路。现在,用于调节对不同活动水平做出反应的复杂过程的分子机制正在被逐步确定。在这里,我们展示了非经典的主要组织相容性复合体 I(MHC I)分子 Qa-1 在健康大脑的 6 层皮质丘脑神经元中表达。在视觉皮层中,Qa-1 的表达始于眼优势(OD)可塑性的关键期,并受神经元活动的调节,表明其在调节依赖于活动的竞争中发挥作用。事实上,在缺乏 Qa-1 的小鼠中,OD 可塑性受到干扰。此外,通过 CD94/NKG2 信号传导(一种已知的免疫系统中 Qa-1 异二聚体受体)也暗示了其参与:选择性靶向这种相互作用模拟了在 Qa-1 敲除小鼠中观察到的可塑性干扰。在皮质中,CD94/NKG2 由小胶质细胞表达,小胶质细胞的形态在依赖于 Qa-1 的方式下发生活动依赖性变化。因此,我们的研究揭示了一种依赖于 L6 神经元中表达的非经典 MHC I 分子的神经元-小胶质细胞相互作用,该相互作用调节视觉皮层的可塑性。这些结果还表明,除了在免疫系统中描述的功能外,Qa-1/HLA-E(配体)和 CD94/NKG2(受体)相互作用在神经系统中还具有意想不到的功能。