Life without double-headed non-muscle myosin II motor proteins

Non-muscle myosin II motor proteins (myosin IIA, myosin IIB, and myosin IIC) belong to a class of molecular motor proteins that are known to transduce cellular free-energy into biological work more efficiently than man-made combustion engines. Nature has given a single myosin II motor protein for lo...

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Main Author: Venkaiah eBetapudi
Format: Article
Language:English
Published: Frontiers Media S.A. 2014-07-01
Series:Frontiers in Chemistry
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fchem.2014.00045/full
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spelling doaj-226f488a75ba4fbf8c9c27dfbff5ba302020-11-25T00:25:32ZengFrontiers Media S.A.Frontiers in Chemistry2296-26462014-07-01210.3389/fchem.2014.0004597096Life without double-headed non-muscle myosin II motor proteinsVenkaiah eBetapudi0Cleveland Clinic FoundationNon-muscle myosin II motor proteins (myosin IIA, myosin IIB, and myosin IIC) belong to a class of molecular motor proteins that are known to transduce cellular free-energy into biological work more efficiently than man-made combustion engines. Nature has given a single myosin II motor protein for lower eukaryotes and multiple for mammals but none for plants in order to provide impetus for their life. These specialized nanomachines drive cellular activities necessary for embryogenesis, organogenesis, and immunity. However, these multifunctional myosin II motor proteins are believed to go awry due to unknown reasons and contribute for the onset and progression of many autosomal-dominant disorders, cataract, deafness, infertility, cancer, kidney, neuronal, and inflammatory diseases. Many pathogens like HIV, Dengue, hepatitis C, and Lymphoma viruses as well as Salmonella and Mycobacteria are now known to take hostage of these dedicated myosin II motor proteins for their efficient pathogenesis. Even after four decades since their discovery, we still have a limited knowledge of how these motor proteins drive cell migration and cytokinesis. We need to enrich our current knowledge on these fundamental cellular processes and develop novel therapeutic strategies to fix mutated myosin II motor proteins in pathological conditions. This is the time to think how to relieve the hijacked myosins from pathogens in order to provide a renewed impetus for patients’ life. Understanding how to steer these molecular motors in proliferating and differentiating stem cells will improve stem cell based-therapeutics development. Given the plethora of cellular activities non-muscle myosin motor proteins are involved in, their importance is apparent for human life.http://journal.frontiersin.org/Journal/10.3389/fchem.2014.00045/fullCytokinesisCancercell migrationPathogenesisMolecular Machinesmicroparticles
collection DOAJ
language English
format Article
sources DOAJ
author Venkaiah eBetapudi
spellingShingle Venkaiah eBetapudi
Life without double-headed non-muscle myosin II motor proteins
Frontiers in Chemistry
Cytokinesis
Cancer
cell migration
Pathogenesis
Molecular Machines
microparticles
author_facet Venkaiah eBetapudi
author_sort Venkaiah eBetapudi
title Life without double-headed non-muscle myosin II motor proteins
title_short Life without double-headed non-muscle myosin II motor proteins
title_full Life without double-headed non-muscle myosin II motor proteins
title_fullStr Life without double-headed non-muscle myosin II motor proteins
title_full_unstemmed Life without double-headed non-muscle myosin II motor proteins
title_sort life without double-headed non-muscle myosin ii motor proteins
publisher Frontiers Media S.A.
series Frontiers in Chemistry
issn 2296-2646
publishDate 2014-07-01
description Non-muscle myosin II motor proteins (myosin IIA, myosin IIB, and myosin IIC) belong to a class of molecular motor proteins that are known to transduce cellular free-energy into biological work more efficiently than man-made combustion engines. Nature has given a single myosin II motor protein for lower eukaryotes and multiple for mammals but none for plants in order to provide impetus for their life. These specialized nanomachines drive cellular activities necessary for embryogenesis, organogenesis, and immunity. However, these multifunctional myosin II motor proteins are believed to go awry due to unknown reasons and contribute for the onset and progression of many autosomal-dominant disorders, cataract, deafness, infertility, cancer, kidney, neuronal, and inflammatory diseases. Many pathogens like HIV, Dengue, hepatitis C, and Lymphoma viruses as well as Salmonella and Mycobacteria are now known to take hostage of these dedicated myosin II motor proteins for their efficient pathogenesis. Even after four decades since their discovery, we still have a limited knowledge of how these motor proteins drive cell migration and cytokinesis. We need to enrich our current knowledge on these fundamental cellular processes and develop novel therapeutic strategies to fix mutated myosin II motor proteins in pathological conditions. This is the time to think how to relieve the hijacked myosins from pathogens in order to provide a renewed impetus for patients’ life. Understanding how to steer these molecular motors in proliferating and differentiating stem cells will improve stem cell based-therapeutics development. Given the plethora of cellular activities non-muscle myosin motor proteins are involved in, their importance is apparent for human life.
topic Cytokinesis
Cancer
cell migration
Pathogenesis
Molecular Machines
microparticles
url http://journal.frontiersin.org/Journal/10.3389/fchem.2014.00045/full
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