Literature DB >> 1577875

The effect of age on the response of the detrusor to intracellular mechanical stimulus: DNA replication and the cell actin matrix.

O M Karim1, N Seki, K J Pienta, J L Mostwin.   

Abstract

Benign prostatic hypertrophy and posterior urethral valves present at both extremes of the age spectrum. Both disease processes can obstruct the urinary stream and ultimately have pathophysiological effects on detrusor structure and function. The mechanisms regulating the structural reorganization of the detrusor to a mechanical outflow obstruction are not known. In an attempt to identify maturational differences in myocyte ultrastructure and consequent effects these might have in modifying the response of the detrusor to mechanical stimulus, we studied differences in dynamic nuclear-cytoskeletal interactions in detrusor tissue in an animal model. Using a drug which specifically severs actin, cytochalasin D (CD), as an intracellular mechanical stimulus, we measured changes in nuclear area and the rate of DNA synthesis in detrusor myocytes from young (2-3 week) and old (8-12 mon) guinea pigs. We found that there were age specific differences to intracellular mechanical stimuli in detrusor muscle. Nuclei of myocytes from young animals showed elastic recoil on severing the cell actin matrix and the tissue from young animals increased replicative DNA synthesis with an intracellular stimulus. In contrast, nuclear shape changes in myocytes from old animals suggested less elasticity, and there was no increase in DNA synthesis with disruption of the cell actin matrix. Anti-alpha-smooth muscle actin antibody and rhodamine phalloidin staining of actin in cytochalasin D treated primary explants of detrusor myocytes showed dose dependent disruption of the actin component of the cytoskeleton. These results suggest that there are fundamental modifications in detrusor myocyte ultrastructure with age. These maturational changes might result in differences in the pathophysiological and structural reorganization of the detrusor in response to outflow obstruction in infancy and adulthood. Furthermore, they suggest that 1) a tensile equilibrium exists between the myocyte nucleus and cytoskeleton; 2) there appears to be a decrease in myocyte nuclear elasticity with ageing; 3) release of nuclear template restrictions increases activity of DNA polymerase alpha in young, but not old, detrusor myocytes; and 4) mechanico-chemical signal transduction in detrusor myocytes may be mediated via the cytoskeleton. In addition, based on previous reports of actin within the nucleus, the results suggest that 1) nuclear actin may have a homeostatic structural role, maintaining the tensile equilibrium between nucleus and cytoskeleton, and 2) integrity of nuclear actin may function to maintain the spatial template restriction on DNA polymerase alpha activity.

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Year:  1992        PMID: 1577875     DOI: 10.1002/jcb.240480406

Source DB:  PubMed          Journal:  J Cell Biochem        ISSN: 0730-2312            Impact factor:   4.429


  4 in total

1.  Accumulation of iron by primary rat hepatocytes in long-term culture: changes in nuclear shape mediated by non-transferrin-bound forms of iron.

Authors:  E E Cable; J R Connor; H C Isom
Journal:  Am J Pathol       Date:  1998-03       Impact factor: 4.307

2.  An early molecular response induced by acute overdistension of the rabbit urinary bladder.

Authors:  M W Chen; L Krasnapolsky; R M Levin; R Buttyan
Journal:  Mol Cell Biochem       Date:  1994-03-16       Impact factor: 3.396

3.  TRPV4 receptor as a functional sensory molecule in bladder urothelium: Stretch-independent, tissue-specific actions and pathological implications.

Authors:  Max W G Roberts; Guiping Sui; Rui Wu; Weifang Rong; Scott Wildman; Bruce Montgomery; Ahmed Ali; Steve Langley; Michael R Ruggieri; Changhao Wu
Journal:  FASEB J       Date:  2019-11-21       Impact factor: 5.191

4.  Purinergic and muscarinic modulation of ATP release from the urothelium and its paracrine actions.

Authors:  Guiping Sui; Chris H Fry; Bruce Montgomery; Max Roberts; Rui Wu; Changhao Wu
Journal:  Am J Physiol Renal Physiol       Date:  2013-11-27
  4 in total

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