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1.
Genome Biol Evol ; 7(6): 1580-9, 2015 May 14.
Artigo em Inglês | MEDLINE | ID: mdl-25977459

RESUMO

The extracellular matrix of scaly green flagellates consists of small organic scales consisting of polysaccharides and scale-associated proteins (SAPs). Molecular phylogenies have shown that these organisms represent the ancestral stock of flagellates from which all green plants (Viridiplantae) evolved. The molecular characterization of four different SAPs is presented. Three SAPs are type-2 membrane proteins with an arginine/alanine-rich short cytoplasmic tail and an extracellular domain that is most likely of bacterial origin. The fourth protein is a filamin-like protein. In addition, we report the presence of proteins similar to the integrin-associated proteins α-actinin (in transcriptomes of glaucophytes and some viridiplants), LIM-domain proteins, and integrin-associated kinase in transcriptomes of viridiplants, glaucophytes, and rhodophytes. We propose that the membrane proteins identified are the predicted linkers between scales and the cytoskeleton. These proteins are present in many green algae but are apparently absent from embryophytes. These proteins represent a new protein family we have termed gralins for green algal integrins. Gralins are absent from embryophytes. A model for the evolution of the cell surface proteins in Plantae is discussed.


Assuntos
Proteínas de Algas/química , Clorófitas , Glicoproteínas de Membrana/química , Proteínas de Algas/análise , Proteínas de Algas/genética , Clorófitas/genética , Clorófitas/ultraestrutura , Simulação por Computador , Evolução Molecular , Glicoproteínas de Membrana/análise , Glicoproteínas de Membrana/genética , Proteínas dos Microfilamentos/química , Proteínas de Plantas/química , Estrutura Terciária de Proteína , Homologia de Sequência de Aminoácidos
2.
FEBS Lett ; 533(1-3): 59-62, 2003 Jan 02.
Artigo em Inglês | MEDLINE | ID: mdl-12505159

RESUMO

Red algae are well suited to study the effects of iron deficiency on light-harvesting complex for photosystem I (LHCI), since they are totally devoid of light-harvesting complex for photosystem II (LHCII). Iron starvation results in a reduction of the pigment content, an increase of the fluorescence yield and a new emission band at 705 nm in the 77 K fluorescence emission spectra. These changes reflect the accumulation of uncoupled, aggregated LHCI in iron-depleted cells. Reconnection of LHCI to de novo synthesized reaction center I (RCI) is the first event, which takes place after iron addition. The changes in the aggregation state of LHCI are likely to occur also in brown and green algae.


Assuntos
Ferro/metabolismo , Complexo de Proteínas do Centro de Reação Fotossintética/química , Complexo de Proteínas do Centro de Reação Fotossintética/metabolismo , Rodófitas/química , Rodófitas/metabolismo , Substâncias Macromoleculares , Fotossíntese , Complexo de Proteína do Fotossistema I , Complexo de Proteína do Fotossistema II , Espectrometria de Fluorescência
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