Plexin-A4信号基团下游小GTP酶的平衡作用促进了哺乳动物皮质神经元树突的发育。

IF 6.7 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Science Signaling Pub Date : 2024-01-16 DOI:10.1126/scisignal.adh7673
Oday Abushalbaq, Jiyeon Baek, Avraham Yaron, Tracy S. Tran
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引用次数: 0

摘要

神经元形态的精确发育对于突触回路的建立以及最终大脑功能的正常发挥至关重要。轴突导向线索semaaphorin 3A(Sema3A)及其受体复合物(neuropilin-1和plexin-A4)发出的信号在神经元形态发生过程中具有多重功能。RhoGEF FARP2通过与plexin-A4的赖氨酸-精氨酸-赖氨酸基团相互作用激活下游RhoGEF FARP2,进而激活小GTP酶Rac1,促进树突分枝,但这一途径对于轴突排斥是不可或缺的。在这里,我们在体外和体内研究了Sema3A介导的小鼠V层皮质神经元树突细化所依赖的小GTP酶信号机制的相互作用。Sema3A 促进小 GTPase Rnd1 与 plexin-A4 胞质结构域中的赖氨酸-缬氨酸-丝氨酸(LVS)氨基酸基团结合。Rnd1 可抑制小 GTP 酶 RhoA 和激酶 ROCK 的活性,从而支持 GTP 酶 Rac1 的活性,使树突得以生长和分枝。过表达显性阴性的RhoA、组成型活性的Rac1或药物抑制ROCK的活性,都能挽救表达缺乏LVS基序的plexin-A4突变体的神经元的树突发育缺陷。我们的研究结果让我们深入了解了在哺乳动物皮层神经元发育过程中,Rho 和 Rac 信号在 plexin-A4 中特定基团下游的平衡作用,从而介导了 Sema3A 依赖性树突细化。
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Balancing act of small GTPases downstream of plexin-A4 signaling motifs promotes dendrite elaboration in mammalian cortical neurons
The precise development of neuronal morphologies is crucial to the establishment of synaptic circuits and, ultimately, proper brain function. Signaling by the axon guidance cue semaphorin 3A (Sema3A) and its receptor complex of neuropilin-1 and plexin-A4 has multifunctional outcomes in neuronal morphogenesis. Downstream activation of the RhoGEF FARP2 through interaction with the lysine-arginine-lysine motif of plexin-A4 and consequent activation of the small GTPase Rac1 promotes dendrite arborization, but this pathway is dispensable for axon repulsion. Here, we investigated the interplay of small GTPase signaling mechanisms underlying Sema3A-mediated dendritic elaboration in mouse layer V cortical neurons in vitro and in vivo. Sema3A promoted the binding of the small GTPase Rnd1 to the amino acid motif lysine-valine-serine (LVS) in the cytoplasmic domain of plexin-A4. Rnd1 inhibited the activity of the small GTPase RhoA and the kinase ROCK, thus supporting the activity of the GTPase Rac1, which permitted the growth and branching of dendrites. Overexpression of a dominant-negative RhoA, a constitutively active Rac1, or the pharmacological inhibition of ROCK activity rescued defects in dendritic elaboration in neurons expressing a plexin-A4 mutant lacking the LVS motif. Our findings provide insights into the previously unappreciated balancing act between Rho and Rac signaling downstream of specific motifs in plexin-A4 to mediate Sema3A-dependent dendritic elaboration in mammalian cortical neuron development.
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来源期刊
Science Signaling
Science Signaling BIOCHEMISTRY & MOLECULAR BIOLOGY-CELL BIOLOGY
CiteScore
9.50
自引率
0.00%
发文量
148
审稿时长
3-8 weeks
期刊介绍: "Science Signaling" is a reputable, peer-reviewed journal dedicated to the exploration of cell communication mechanisms, offering a comprehensive view of the intricate processes that govern cellular regulation. This journal, published weekly online by the American Association for the Advancement of Science (AAAS), is a go-to resource for the latest research in cell signaling and its various facets. The journal's scope encompasses a broad range of topics, including the study of signaling networks, synthetic biology, systems biology, and the application of these findings in drug discovery. It also delves into the computational and modeling aspects of regulatory pathways, providing insights into how cells communicate and respond to their environment. In addition to publishing full-length articles that report on groundbreaking research, "Science Signaling" also features reviews that synthesize current knowledge in the field, focus articles that highlight specific areas of interest, and editor-written highlights that draw attention to particularly significant studies. This mix of content ensures that the journal serves as a valuable resource for both researchers and professionals looking to stay abreast of the latest advancements in cell communication science.
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