Literature DB >> 31826923

Identification of Low-Abundance Lipid Droplet Proteins in Seeds and Seedlings.

Franziska K Kretzschmar1, Nathan M Doner2, Hannah E Krawczyk1, Patricia Scholz1, Kerstin Schmitt3, Oliver Valerius3, Gerhard H Braus3, Robert T Mullen2, Till Ischebeck4.   

Abstract

The developmental program of seed formation, germination, and early seedling growth requires not only tight regulation of cell division and metabolism, but also concerted control of the structure and function of organelles, which relies on specific changes in their protein composition. Of particular interest is the switch from heterotrophic to photoautotrophic seedling growth, for which cytoplasmic lipid droplets (LDs) play a critical role as depots for energy-rich storage lipids. Here, we present the results of a bottom-up proteomics study analyzing the total protein fractions and LD-enriched fractions in eight different developmental phases during silique (seed) development, seed germination, and seedling establishment in Arabidopsis (Arabidopsis thaliana). The quantitative analysis of the LD proteome using LD-enrichment factors led to the identification of six previously unidentified and comparably low-abundance LD proteins, each of which was confirmed by intracellular localization studies with fluorescent protein fusions. In addition to these advances in LD protein discovery and the potential insights provided to as yet unexplored aspects in plant LD functions, our data set allowed for a comparative analysis of the LD protein composition throughout the various developmental phases examined. Among the most notable of the alterations in the LD proteome were those during seedling establishment, indicating a switch in the physiological function(s) of LDs after greening of the cotyledons. This work highlights LDs as dynamic organelles with functions beyond lipid storage.
© 2020 American Society of Plant Biologists. All Rights Reserved.

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Year:  2019        PMID: 31826923      PMCID: PMC7054876          DOI: 10.1104/pp.19.01255

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  90 in total

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Review 4.  Storage reserve mobilization in germinating oilseeds: Arabidopsis as a model system.

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  9 in total

1.  Discovering Lipid Droplet Proteins: From Seeds to Seedlings.

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Journal:  Plant Physiol       Date:  2020-03       Impact factor: 8.340

2.  SEIPIN Isoforms Interact with the Membrane-Tethering Protein VAP27-1 for Lipid Droplet Formation.

Authors:  Michael Scott Greer; Yingqi Cai; Satinder K Gidda; Nicolas Esnay; Franziska K Kretzschmar; Damien Seay; Elizabeth McClinchie; Till Ischebeck; Robert T Mullen; John M Dyer; Kent D Chapman
Journal:  Plant Cell       Date:  2020-07-20       Impact factor: 11.277

3.  SEED LIPID DROPLET PROTEIN1, SEED LIPID DROPLET PROTEIN2, and LIPID DROPLET PLASMA MEMBRANE ADAPTOR mediate lipid droplet-plasma membrane tethering.

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4.  Arabidopsis thaliana EARLY RESPONSIVE TO DEHYDRATION 7 Localizes to Lipid Droplets via Its Senescence Domain.

Authors:  Nathan M Doner; Damien Seay; Marina Mehling; Siqi Sun; Satinder K Gidda; Kerstin Schmitt; Gerhard H Braus; Till Ischebeck; Kent D Chapman; John M Dyer; Robert T Mullen
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Review 5.  Bringing New Methods to the Seed Proteomics Platform: Challenges and Perspectives.

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6.  Heat stress leads to rapid lipid remodeling and transcriptional adaptations in Nicotiana tabacum pollen tubes.

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7.  Regulation of Heat Stress in Physcomitrium (Physcomitrella) patens Provides Novel Insight into the Functions of Plant RNase H1s.

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8.  Triacylglycerol remodeling in Physaria fendleri indicates oil accumulation is dynamic and not a metabolic endpoint.

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Journal:  Plant Physiol       Date:  2021-10-05       Impact factor: 8.340

9.  LDIP cooperates with SEIPIN and LDAP to facilitate lipid droplet biogenesis in Arabidopsis.

Authors:  Michal Pyc; Satinder K Gidda; Damien Seay; Nicolas Esnay; Franziska K Kretzschmar; Yingqi Cai; Nathan M Doner; Michael S Greer; J Joe Hull; Denis Coulon; Claire Bréhélin; Olga Yurchenko; Jan de Vries; Oliver Valerius; Gerhard H Braus; Till Ischebeck; Kent D Chapman; John M Dyer; Robert T Mullen
Journal:  Plant Cell       Date:  2021-09-24       Impact factor: 11.277

  9 in total

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