Colocalization of α-actinin and synaptopodin in the pyramidal cell axon initial segment.
نویسندگان
چکیده
The cisternal organelle that resides in the axon initial segment (AIS) of neocortical and hippocampal pyramidal cells is thought to be involved in regulating the Ca(2+) available to maintain AIS scaffolding proteins, thereby preserving normal AIS structure and function. Through immunocytochemistry and correlative light and electron microscopy, we show here that the actin-binding protein α-actinin is present in the typical cistenal organelle of rodent pyramidal neurons as well as in a large structure in the AIS of a subpopulation of layer V pyramidal cells that we have called the "giant saccular organelle." Indeed, this localization of α-actinin in the AIS is dependent on the integrity of the actin cytoskeleton. Moreover, in the cisternal organelle of cultured hippocampal neurons, α-actinin colocalizes extensively with synaptopodin, a protein that interacts with both actin and α-actinin, and they appear concomitantly during the development of these neurons. Together, these results indicate that α-actinin and the actin cytoskeleton are important components of the cisternal organelle that are probably required to stabilize the AIS.
منابع مشابه
Loss of the cisternal organelle in the axon initial segment of cortical neurons in synaptopodin-deficient mice.
The axon initial segment of cortical neurons contains the so-called cisternal organelle, an enigmatic formation of stacked endoplasmic reticulum and interdigitating plates of electron-dense material. This organelle shows many structural similarities to the spine apparatus, a cellular organelle found in a subpopulation of dendritic spines. Whereas roles in calcium signaling and protein trafficki...
متن کاملSynaptopodin couples epithelial contractility to α-actinin-4–dependent junction maturation
The epithelial junction experiences mechanical force exerted by endogenous actomyosin activities and from interactions with neighboring cells. We hypothesize that tension generated at cell-cell adhesive contacts contributes to the maturation and assembly of the junctional complex. To test our hypothesis, we used a hydraulic apparatus that can apply mechanical force to intercellular junction in ...
متن کاملAxon initial segment position changes CA1 pyramidal neuron excitability
The axon initial segment (AIS) is the portion of the neuronal membrane responsible for action potential generation in many neural cell types. Recent work by Matthew Grubb and Juan Burrone (2010) show that the AIS can shift its location in an activity-dependent manner: long-term depolarization induced by high extracellular potassium concentrations in cultures of dissociated hippocampal neurons r...
متن کاملVoltage-gated ion channels in the axon initial segment of human cortical pyramidal cells and their relationship with chandelier cells.
The axon initial segment (AIS) of pyramidal cells is a critical region for the generation of action potentials and for the control of pyramidal cell activity. Here we show that Na+ and K+ voltage-gated channels, together with other molecules involved in the localization of ion channels, are distributed asymmetrically in the AIS of pyramidal cells situated in the human temporal neocortex. There ...
متن کاملSynapses on the axon hillocks and initial segments of pyramidal cell axons in the cerebral cortex.
The axon hillocks and initial segments of pyramidal cell axons can be clearly recognized in electron micrographs of the somatic sensory cortex. The initial segment is characterized by three features: bundles of neurotubules linked together by electron-dense bands, a layer of dense material attached to the inner surface of the plasma membrane, and small membranebound dense bodies. All of these e...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Cerebral cortex
دوره 22 7 شماره
صفحات -
تاریخ انتشار 2012