Changes in the amounts of cytoskeletal proteins within the perikarya and axons of regenerating frog motoneurons
نویسندگان
چکیده
Changes in the amounts of tubulin, actin, and neurofilament polypeptides were found in regenerating motoneurons of grass frogs during the period of axonal elongation. Ventral roots 9 and 10 were transected unilaterally about 7 mm from the spinal cord. 35 d later, [3H]colchicine binding had decreased in the proximal stumps to approximately one-half of contralateral control values, well before the regenerating motor axons had reinnervated skeletal muscles of the hind limb. [3H]colchicine binding did not change significantly in the operated halves of the 9th and 10th spinal cord segments over a 75-d period. The relative amounts of actin, tubulin, and neurofilament polypeptides in the operated ventral roots were measured by quantitative densitometry of stained two-dimensional electrophoretic gels. Alpha-tubulin, beta-tubulin, and the 68,000 molecular weight subunit of neurofilaments (NF68) decreased within the transected ventral roots to 78%, 57%, and less than 15% of control values, respectively. The amount of actin increased to 132% of control values within the operated ventral roots, although this change was not statistically significant. Opposite changes were found within motoneuronal cell bodies isolated from the spinal cord. The relative amounts of alpha-tubulin, beta-tubulin and NF68 within axotomized perikarya increased, respectively, to 191%, 146%, and 144% of that in control perikarya isolated from the contralateral side of the spinal cord. Thus, the changes in NF68 and tubulin did not occur uniformly throughout the injured cells. The possible structural and functional consequences of these changes are discussed.
منابع مشابه
Transport of cytoskeletal elements from parent axons into regenerating daughter axons.
The kinetics of slow axonal transport in newly regenerating axonal sprouts were compared with those in nonelongating axons. The slowly transported cytoskeletal proteins of ventral motor axons were prelabeled by microinjection of 35S-methionine into the spinal cord. Pulse-labeled slow transport "waves" were observed as they progressed from the surviving "parent" axon stumps (located proximal to ...
متن کاملDelayed Synaptic Changes in Axotomized Spinal Motoneurons of Newborn Rats Associated with Progressive Neuronal Loss: Immunohistochemical, Ultrastructural, and Quantitative Study
Background and Objective: Sciatic nerve transection is characterized by a rapid wave of motoneuron death associated with progressive synaptic lesions. The purpose of this study was to evaluate the long term synaptic changes. Materials and Methods: This basic study was carried out on paraffin- or resin-em...
متن کاملEffects of congenital hypothyroidism on the morphology of trigeminal motoneuron assessed by the Golgi staining method in rats
Introduction: Appropriate thyroid hormone (TH) levels are essential during the critical period of brain development, which is associated with the growth of axons and dendrites and synapse formation. In rats, oral motor circuits begin to reach to their adult pattern around 3 weeks after birth, the period in which alteration from sucking to biting and chewing occurs (weaning time). Trigeminal ...
متن کاملSlow transport rates of cytoskeletal proteins change during regeneration of axotomized retinal neurons in adult rats.
To investigate cytoskeletal changes associated with axonal regrowth from damaged nerve cells in the mammalian CNS, we examined the slow transport of axonal proteins during the regeneration of adult rat retinal ganglion cell (RGC) axons. Although normally such RGC axons do not regrow after injury in the CNS, they can extend several centimeters when their nonneuronal environment is changed by rep...
متن کاملIntrinsic neuronal properties control selective targeting of regenerating motoneurons.
Despite advances in microsurgical techniques, recovery of motor function after peripheral nerve injury is often poor because many regenerating axons reinnervate inappropriate targets. Consequently, surgical repair must include treatment strategies that improve motor axon targeting. Development of such treatments will require a better understanding of the molecular mechanisms governing selective...
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:
- The Journal of Cell Biology
دوره 96 شماره
صفحات -
تاریخ انتشار 1983