Lamin B receptor-mediated chromatin tethering to the nuclear envelope is detrimental to the Xenopus blastula.

J Biochem

Group of Developmental Cell Biology, Graduate School of Science, Nagoya University, Furo-cho, Chikusa-ku, Nagoya 464-8602, Japan.

Published: April 2021

AI Article Synopsis

  • In eukaryotic cells, chromatin is connected to the nuclear envelope (NE) by inner nuclear membrane proteins (INMPs), but in Xenopus blastula, this connection relies on a form of actin that develops specifically for the blastula stage.
  • Experimental introduction of INMPs in egg extracts showed that only lamin B receptor (LBR) can tether chromatin to the NE when actin polymerization is limited, and this function depends on specific binding domains of LBR.
  • Interestingly, LBR levels are low during the Xenopus blastula phase, and increasing LBR prematurely disrupts nuclear structure, leads to DNA damage, and harms cell division, indicating that LBR-mediated tethering might be intentionally avoided during early

Article Abstract

In the nucleus of eukaryotic cells, chromatin is tethered to the nuclear envelope (NE), wherein inner nuclear membrane proteins (INMPs) play major roles. However, in Xenopus blastula, chromatin tethering to the NE depends on nuclear filamentous actin that develops in a blastula-specific manner. To investigate whether chromatin tethering operates in the blastula through INMPs, we experimentally introduced INMPs into Xenopus egg extracts that recapitulate nuclear formation in fertilized eggs. When expressed in extracts in which polymerization of actin is inhibited, only lamin B receptor (LBR), among the five INMPs tested, tethered chromatin to the NE, depending on its N2 and N3 domains responsible for chromatin-protein binding. N2-3-deleted LBR did not tether chromatin, although it was localized in the nuclei. We subsequently found that the LBR level was very low in the Xenopus blastula but was elevated after the blastula stage. When the LBR level was precociously elevated in the blastula by injecting LBR mRNA, it induced alterations in nuclear lamina architecture and nuclear morphology and caused DNA damage and abnormal mitotic spindles, depending on the N2-3 domains. These results suggest that LBR-mediated chromatin tethering is circumvented in the Xenopus blastula, as it is detrimental to embryonic development.

Download full-text PDF

Source
http://dx.doi.org/10.1093/jb/mvaa123DOI Listing

Publication Analysis

Top Keywords

chromatin tethering
16
xenopus blastula
16
nuclear envelope
8
lbr level
8
elevated blastula
8
chromatin
7
nuclear
7
blastula
7
xenopus
5
lbr
5

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!