Department of Neurobiology and Anatomy, Drexel University College of Medicine, Philadelphia, PA 19129, USA.
J Cell Sci. 2024 Oct 1;137(19). doi: 10.1242/jcs.261966. Epub 2024 Oct 7.
Association of tau (encoded by Mapt) with microtubules causes them to be labile, whereas association of MAP6 with microtubules causes them to be stable. As axons differentiate and grow, tau and MAP6 segregate from one another on individual microtubules, resulting in the formation of stable and labile domains. The functional significance of the yin-yang relationship between tau and MAP6 remains speculative, with one idea being that such a relationship assists in balancing morphological stability with plasticity. Here, using primary rodent neuronal cultures, we show that tau depletion has opposite effects compared to MAP6 depletion on the rate of neuronal development, the efficiency of growth cone turning, and the number of neuronal processes and axonal branches. Opposite effects to those seen with tau depletion were also observed on the rate of neuronal migration, in an in vivo assay, when MAP6 was depleted. When tau and MAP6 were depleted together from neuronal cultures, the morphological phenotypes negated one another. Although tau and MAP6 are multifunctional proteins, our results suggest that the observed effects on neuronal development are likely due to their opposite roles in regulating microtubule stability.
tau(由 Mapt 编码)与微管的结合会导致微管不稳定,而 MAP6 与微管的结合会导致微管稳定。随着轴突的分化和生长,tau 和 MAP6 在单个微管上彼此分离,导致稳定和不稳定域的形成。tau 和 MAP6 之间这种阴阳关系的功能意义仍在推测之中,有一种观点认为,这种关系有助于平衡形态稳定性和可塑性。在这里,我们使用原代啮齿动物神经元培养物表明,tau 耗竭与 MAP6 耗竭相比,对神经元发育速度、生长锥转向效率以及神经元突起和轴突分支数量有相反的影响。当 MAP6 耗竭时,在体内测定中,神经元迁移速度也观察到与 tau 耗竭相反的效果。当 MAP6 从神经元培养物中一起耗尽时,形态表型相互抵消。尽管 tau 和 MAP6 是多功能蛋白,但我们的结果表明,它们对神经元发育的影响可能是由于它们在调节微管稳定性方面的相反作用。