TY - JOUR
T1 - Paraspeckle condensation is controlled via TDP-43 polymerization and linked to neuroprotection
AU - Project MinE ALS Sequencing Consortium
AU - Hodgson, Rachel E.
AU - Huang, Wan Ping
AU - Lang, Ruaridh
AU - Kumar, Vedanth
AU - An, Haiyan
AU - Stender, Emil G.P.
AU - Chalakova, Zhaklin P.
AU - Driver, Mark D.
AU - Sanchez Avila, Anna
AU - Ellis, Brittany C.S.
AU - Day, Emily
AU - Rayment, Jessica A.
AU - Baeg, Kyungmin
AU - Strange, Andrew
AU - Moll, Tobias
AU - Wright, Gareth S.A.
AU - van Vugt, Joke J.F.A.
AU - Cooper-Knock, Johnathan
AU - van Vugt, Joke J.F.A.
AU - Dalgard, Clifton L.
AU - Glass, Jonathan D.
AU - Landers, John E.
AU - Morrison, Karen E.
AU - Shaw, Pamela J.
AU - Shaw, Chris
AU - Al-Chalabi, Ammar
AU - Başak, Nazli A.
AU - Weber, Markus
AU - Andersen, Peter
AU - Povedano, Monica
AU - Mora Pardina, Jesus S.
AU - Salas, Teresa
AU - de Carvalho, Mamede
AU - van den Berg, Leonard H.
AU - Veldink, Jan H.
AU - Silani, Vincenzo
AU - Ticozzi, Nicola
AU - Drory, Vivian
AU - Yehuda, Shovman
AU - Lerner, Yossef
AU - Gotkine, Marc
AU - McLaughin, Russell
AU - Hardiman, Orla
AU - Vourc’h, Patrick
AU - Couratier, Philippe
AU - Corcia, Philippe
AU - van Damme, Philip
AU - Allen, Scott P.
AU - Locker, Nicolas
AU - Pitout, Ianthe
N1 - Publisher Copyright:
© The Author(s) 2026.
PY - 2026/4
Y1 - 2026/4
N2 - The paraspeckle is a disease-relevant biomolecular condensate assembled from long non-coding RNA (lncRNA) NEAT1_2 ribonucleoprotein particles. Paraspeckle biogenesis is suppressed in normal tissues, yet it can be rapidly upregulated under stress. Here we demonstrate that a neurodegeneration-linked RNA-binding protein TDP-43 inhibits NEAT1_2 ribonucleoprotein particle condensation into the paraspeckle, in a concentration-dependent manner, which requires its intact polymerization and RNA binding. This effect is counterbalanced by core paraspeckle proteins such as FUS. Below disruptive concentrations, TDP-43 can be recruited into paraspeckles, forming non-liquid clusters. Under stress, TDP-43 sequestration into de novo nuclear condensates alleviates paraspeckle suppression and increases their dynamism. NEAT1_2 middle-part and 3′-end UG repeats mediate paraspeckle regulation by TDP-43 cotranscriptionally and post assembly, respectively. The deletion of the 3′-end UG repeat increases paraspeckle stability and cytoprotection in stressed human neurons. Consistently, longer 3′-end UG repeats are linked to shorter survival in the neurodegenerative disease amyotrophic lateral sclerosis. Thus, TDP-43 is a critical regulator of paraspeckle condensates linked to cytoprotection.
AB - The paraspeckle is a disease-relevant biomolecular condensate assembled from long non-coding RNA (lncRNA) NEAT1_2 ribonucleoprotein particles. Paraspeckle biogenesis is suppressed in normal tissues, yet it can be rapidly upregulated under stress. Here we demonstrate that a neurodegeneration-linked RNA-binding protein TDP-43 inhibits NEAT1_2 ribonucleoprotein particle condensation into the paraspeckle, in a concentration-dependent manner, which requires its intact polymerization and RNA binding. This effect is counterbalanced by core paraspeckle proteins such as FUS. Below disruptive concentrations, TDP-43 can be recruited into paraspeckles, forming non-liquid clusters. Under stress, TDP-43 sequestration into de novo nuclear condensates alleviates paraspeckle suppression and increases their dynamism. NEAT1_2 middle-part and 3′-end UG repeats mediate paraspeckle regulation by TDP-43 cotranscriptionally and post assembly, respectively. The deletion of the 3′-end UG repeat increases paraspeckle stability and cytoprotection in stressed human neurons. Consistently, longer 3′-end UG repeats are linked to shorter survival in the neurodegenerative disease amyotrophic lateral sclerosis. Thus, TDP-43 is a critical regulator of paraspeckle condensates linked to cytoprotection.
UR - https://www.scopus.com/pages/publications/105033891181
U2 - 10.1038/s41556-026-01895-y
DO - 10.1038/s41556-026-01895-y
M3 - Article
C2 - 41851271
AN - SCOPUS:105033891181
SN - 1465-7392
VL - 28
SP - 754
EP - 770
JO - Nature Cell Biology
JF - Nature Cell Biology
IS - 4
ER -