Spontaneous Confinement of mRNA Molecules at Biomolecular Condensate Boundaries
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作者:
Perelman, Rebecca T.
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Univ Michigan, Single Mol Anal Grp, Ann Arbor, MI 48109 USAUniv Michigan, Single Mol Anal Grp, Ann Arbor, MI 48109 USA
Perelman, Rebecca T.
[1
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Schmidt, Andreas
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Univ Michigan, Single Mol Anal Grp, Ann Arbor, MI 48109 USAUniv Michigan, Single Mol Anal Grp, Ann Arbor, MI 48109 USA
Schmidt, Andreas
[1
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Khan, Umar
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Harvard Univ, Ctr Adv Biomed Imaging & Photon, Beth Israel Deaconess Med Ctr, Boston, MA 02115 USAUniv Michigan, Single Mol Anal Grp, Ann Arbor, MI 48109 USA
Khan, Umar
[2
]
Walter, Nils G.
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Univ Michigan, Single Mol Anal Grp, Ann Arbor, MI 48109 USA
Univ Michigan, Ctr RNA Biomed, Dept Chem, Ann Arbor, MI 48109 USAUniv Michigan, Single Mol Anal Grp, Ann Arbor, MI 48109 USA
Walter, Nils G.
[1
,3
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机构:
[1] Univ Michigan, Single Mol Anal Grp, Ann Arbor, MI 48109 USA
[2] Harvard Univ, Ctr Adv Biomed Imaging & Photon, Beth Israel Deaconess Med Ctr, Boston, MA 02115 USA
[3] Univ Michigan, Ctr RNA Biomed, Dept Chem, Ann Arbor, MI 48109 USA
Cellular biomolecular condensates, termed ribonucleoprotein (RNP) granules, are often enriched in messenger RNA (mRNA) molecules relative to the surrounding cytoplasm. Yet, the spatial localization and diffusion of mRNAs in close proximity to phase separated RNP granules are not well understood. In this study, we performed single-molecule fluorescence imaging experiments of mRNAs in live cells in the presence of two types of RNP granules, stress granules (SGs) and processing bodies (PBs), which are distinct in their molecular composition and function. We developed a photobleaching- and noise-corrected colocalization imaging algorithm that was employed to determine the accurate positions of individual mRNAs relative to the granule's boundaries. We found that mRNAs are often localized at granule boundaries, an observation consistent with recently published data. We suggest that mRNA molecules become spontaneously confined at the RNP granule boundary similar to the adsorption of polymer molecules at liquid-liquid interfaces, which is observed in various technological and biological processes. We also suggest that this confinement could be due to a combination of intermolecular interactions associated with, first, the screening of a portion of the RNP granule interface by the polymer and, second, electrostatic interactions due to a strong electric field induced by a Donnan potential generated across the thin interface.
机构:
Mem Sloan Kettering Canc Ctr, Canc Biol & Genet Program, New York, NY 10065 USAMem Sloan Kettering Canc Ctr, Canc Biol & Genet Program, New York, NY 10065 USA
Mayr, Christine
Mittag, Tanja
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St Jude Childrens Res Hosp, Dept Struct Biol, Memphis, TN 38105 USAMem Sloan Kettering Canc Ctr, Canc Biol & Genet Program, New York, NY 10065 USA
Mittag, Tanja
Tang, T. -Y. Dora
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Max Planck Inst Mol Cell Biol & Genet, Dresden, GermanyMem Sloan Kettering Canc Ctr, Canc Biol & Genet Program, New York, NY 10065 USA
Tang, T. -Y. Dora
Wen, Wenyu
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机构:
Fudan Univ, Huashan Hosp, Dept Neurosurg, State Key Lab Med Neurobiol, Shanghai, Peoples R China
Fudan Univ, Inst Biomed Sci, MOE Frontiers Ctr Brain Sci, Sch Basic Med Sci, Shanghai, Peoples R ChinaMem Sloan Kettering Canc Ctr, Canc Biol & Genet Program, New York, NY 10065 USA
Wen, Wenyu
Zhang, Hong
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Chinese Acad Sci, Inst Biophys, Natl Lab Biomacromolecules, Beijing, Peoples R China
Univ Chinese Acad Sci, Coll Life Sci, Beijing, Peoples R ChinaMem Sloan Kettering Canc Ctr, Canc Biol & Genet Program, New York, NY 10065 USA
Zhang, Hong
Zhang, Huaiying
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Carnegie Mellon Univ, Dept Biol Sci, Pittsburgh, PA 15213 USAMem Sloan Kettering Canc Ctr, Canc Biol & Genet Program, New York, NY 10065 USA