An Autocrine Negative Feedback Loop Inhibits Dictyostelium discoideum Proliferation through Pathways Including IP3/Ca <sup>2+</sup>

Many mammalian tissues such as the liver have the remarkable ability to regulate their size and have their cells stop proliferating when the tissue reaches the correct size. One possible mechanism involves the cells secreting a signal that they all sense, and a high level of the signal tells the cel...

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Main Authors: Yu Tang, Ramesh Rijal, David E. Zimmerhanzel, Jacquelyn R. McCullough, Louis A. Cadena, Richard H. Gomer
Format: Article
Language:English
Published: American Society for Microbiology 2021-06-01
Series:mBio
Online Access:https://journals.asm.org/doi/10.1128/mBio.01347-21
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author Yu Tang
Ramesh Rijal
David E. Zimmerhanzel
Jacquelyn R. McCullough
Louis A. Cadena
Richard H. Gomer
author_facet Yu Tang
Ramesh Rijal
David E. Zimmerhanzel
Jacquelyn R. McCullough
Louis A. Cadena
Richard H. Gomer
author_sort Yu Tang
collection DOAJ
description Many mammalian tissues such as the liver have the remarkable ability to regulate their size and have their cells stop proliferating when the tissue reaches the correct size. One possible mechanism involves the cells secreting a signal that they all sense, and a high level of the signal tells the cells that there are enough of them and to stop proliferating.
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spelling doaj.art-cd769e08364847d297279543191a45c42022-12-21T20:16:32ZengAmerican Society for MicrobiologymBio2150-75112021-06-0112310.1128/mBio.01347-21An Autocrine Negative Feedback Loop Inhibits Dictyostelium discoideum Proliferation through Pathways Including IP3/Ca <sup>2+</sup>Yu Tang0Ramesh Rijal1David E. Zimmerhanzel2Jacquelyn R. McCullough3Louis A. Cadena4Richard H. Gomer5Department of Biology, Texas A&amp;M University, College Station, Texas, USADepartment of Biology, Texas A&amp;M University, College Station, Texas, USADepartment of Biology, Texas A&amp;M University, College Station, Texas, USADepartment of Biology, Texas A&amp;M University, College Station, Texas, USADepartment of Biology, Texas A&amp;M University, College Station, Texas, USADepartment of Biology, Texas A&amp;M University, College Station, Texas, USAMany mammalian tissues such as the liver have the remarkable ability to regulate their size and have their cells stop proliferating when the tissue reaches the correct size. One possible mechanism involves the cells secreting a signal that they all sense, and a high level of the signal tells the cells that there are enough of them and to stop proliferating.https://journals.asm.org/doi/10.1128/mBio.01347-21
spellingShingle Yu Tang
Ramesh Rijal
David E. Zimmerhanzel
Jacquelyn R. McCullough
Louis A. Cadena
Richard H. Gomer
An Autocrine Negative Feedback Loop Inhibits Dictyostelium discoideum Proliferation through Pathways Including IP3/Ca <sup>2+</sup>
mBio
title An Autocrine Negative Feedback Loop Inhibits Dictyostelium discoideum Proliferation through Pathways Including IP3/Ca <sup>2+</sup>
title_full An Autocrine Negative Feedback Loop Inhibits Dictyostelium discoideum Proliferation through Pathways Including IP3/Ca <sup>2+</sup>
title_fullStr An Autocrine Negative Feedback Loop Inhibits Dictyostelium discoideum Proliferation through Pathways Including IP3/Ca <sup>2+</sup>
title_full_unstemmed An Autocrine Negative Feedback Loop Inhibits Dictyostelium discoideum Proliferation through Pathways Including IP3/Ca <sup>2+</sup>
title_short An Autocrine Negative Feedback Loop Inhibits Dictyostelium discoideum Proliferation through Pathways Including IP3/Ca <sup>2+</sup>
title_sort autocrine negative feedback loop inhibits dictyostelium discoideum proliferation through pathways including ip3 ca sup 2 sup
url https://journals.asm.org/doi/10.1128/mBio.01347-21
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