TY - JOUR
T1 - Meiotic Chromosome Homology Search Involves Modifications of the Nuclear Envelope Protein Matefin/SUN-1
AU - Penkner, Alexandra M.
AU - Fridkin, Alexandra
AU - Gloggnitzer, Jiradet
AU - Baudrimont, Antoine
AU - Machacek, Thomas
AU - Woglar, Alexander
AU - Csaszar, Edina
AU - Pasierbek, Pawel
AU - Ammerer, Gustav
AU - Gruenbaum, Yosef
AU - Jantsch, Verena
PY - 2009/11/25
Y1 - 2009/11/25
N2 - Genome haploidization during meiosis depends on recognition and association of parental homologous chromosomes. The C. elegans SUN/KASH domain proteins Matefin/SUN-1 and ZYG-12 have a conserved role in this process. They bridge the nuclear envelope, connecting the cytoplasm and the nucleoplasm to transmit forces that allow chromosome movement and homolog pairing and prevent nonhomologous synapsis. Here, we show that Matefin/SUN-1 forms rapidly moving aggregates at putative chromosomal attachment sites in the meiotic transition zone (TZ). We analyzed requirements for aggregate formation and identified multiple phosphotarget residues in the nucleoplasmic domain of Matefin/SUN-1. These CHK-2 dependent phosphorylations occur in leptotene/zygotene, diminish during pachytene and are involved in pairing. Mimicking phosphorylation causes an extended TZ and univalents at diakinesis. Our data suggest that the properties of the nuclear envelope are altered during the time window when homologs are sorted and Matefin/SUN-1 aggregates form, thereby controling the movement, homologous pairing and interhomolog recombination of chromosomes.
AB - Genome haploidization during meiosis depends on recognition and association of parental homologous chromosomes. The C. elegans SUN/KASH domain proteins Matefin/SUN-1 and ZYG-12 have a conserved role in this process. They bridge the nuclear envelope, connecting the cytoplasm and the nucleoplasm to transmit forces that allow chromosome movement and homolog pairing and prevent nonhomologous synapsis. Here, we show that Matefin/SUN-1 forms rapidly moving aggregates at putative chromosomal attachment sites in the meiotic transition zone (TZ). We analyzed requirements for aggregate formation and identified multiple phosphotarget residues in the nucleoplasmic domain of Matefin/SUN-1. These CHK-2 dependent phosphorylations occur in leptotene/zygotene, diminish during pachytene and are involved in pairing. Mimicking phosphorylation causes an extended TZ and univalents at diakinesis. Our data suggest that the properties of the nuclear envelope are altered during the time window when homologs are sorted and Matefin/SUN-1 aggregates form, thereby controling the movement, homologous pairing and interhomolog recombination of chromosomes.
KW - CELLBIO
KW - CELLCYCLE
KW - SIGNALING
UR - http://www.scopus.com/inward/record.url?scp=70450223505&partnerID=8YFLogxK
U2 - 10.1016/j.cell.2009.10.045
DO - 10.1016/j.cell.2009.10.045
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C2 - 19913286
AN - SCOPUS:70450223505
SN - 0092-8674
VL - 139
SP - 920
EP - 933
JO - Cell
JF - Cell
IS - 5
ER -