4.7 Article

Lamin-like analogues in plants: the characterization of NMCP1 in Allium cepa

期刊

JOURNAL OF EXPERIMENTAL BOTANY
卷 64, 期 6, 页码 1553-1564

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jxb/ert020

关键词

Allium cepa; bioinformatics analysis; immunofluorescence microscopy; immunoelectron microscopy; LINC proteins; NMCP1 proteins; nucleoskeleton; phylogenetic analysis; plamina; plant lamina; protein analysis

资金

  1. Spanish Ministry of Science and Innovation [BFU2010-15900]
  2. CSIC [PIE 201020E019]
  3. Junta de Ampliacion de Estudios grant [JAEPre_08_00012/JAEPre027]

向作者/读者索取更多资源

The nucleoskeleton of plants contains a peripheral lamina (also called plamina) and, even though lamins are absent in plants, their roles are still fulfilled in plant nuclei. One of the most intriguing topics in plant biology concerns the identity of lamin protein analogues in plants. Good candidates to play lamin functions in plants are the members of the NMCP (nuclear matrix constituent protein) family, which exhibit the typical tripartite structure of lamins. This paper describes a bioinformatics analysis and classification of the NMCP family based on phylogenetic relationships, sequence similarity and the distribution of conserved regions in 76 homologues. In addition, NMCP1 in the monocot Allium cepa characterized by its sequence and structure, biochemical properties, and subnuclear distribution and alterations in its expression throughout the root were identified. The results demonstrate that these proteins exhibit many similarities to lamins (structural organization, conserved regions, subnuclear distribution, and solubility) and that they may fulfil the functions of lamins in plants. These findings significantly advance understanding of the structural proteins of the plant lamina and nucleoskeleton and provide a basis for further investigation of the protein networks forming these structures.

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