2013
DOI: 10.1002/chem.201303398
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Hydroxymethylated Phyllobilins: A Puzzling New Feature of the Dioxobilin Branch of Chlorophyll Breakdown

Abstract: Colorless nonfluorescent chlorophyll (Chl) catabolites (NCCs) are formyloxobilin-type phyllobilins, which are considered the typical products of Chl breakdown in senescent leaves. However, in degreened leaves of some plants, dioxobilin-type Chl catabolites (DCCs) predominate, which lack the formyl group of the NCCs, and which arise from Chl catabolites by oxidative removal of the formyl group by a P450 enzyme. Here a structural investigation of the DCCs in the methylesterase16 mutant of Arabidopsis thaliana is… Show more

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Cited by 35 publications
(80 citation statements)
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References 40 publications
(80 reference statements)
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“…Linear tetrapyrroles can also be produced during the breakdown of chlorophyll in plants (Hörtensteiner and Kräutler, 2011; Süssenbacher et al, 2014); therefore a pathway able to detect a variety of bilins and related compounds could also report the presence of chlorophyll. The ability to detect chlorophyll could be advantageous for a predator, because chlorophyll is a strongly photodynamic, potentially toxic substance in light.…”
Section: Life Without Phytochrome: Bilin-dependent Stress Responses Imentioning
confidence: 99%
“…Linear tetrapyrroles can also be produced during the breakdown of chlorophyll in plants (Hörtensteiner and Kräutler, 2011; Süssenbacher et al, 2014); therefore a pathway able to detect a variety of bilins and related compounds could also report the presence of chlorophyll. The ability to detect chlorophyll could be advantageous for a predator, because chlorophyll is a strongly photodynamic, potentially toxic substance in light.…”
Section: Life Without Phytochrome: Bilin-dependent Stress Responses Imentioning
confidence: 99%
“…Thus, in the Arabidopsis MES16‐mutant, termed mes16‐1 , complementary phyllobilins accumulated with retained methyl ester function of p FCC 12. 13 To our surprise, the structures of two of the nonfluorescent DCCs (NDCCs) from the mutant plant differed from those of any known DNCC, by featuring a puzzling extra hydroxymethyl group at the newly restructured ring A of these NDCCs 13…”
mentioning
confidence: 93%
“…[6] Um den Isomerisierungsprozess des isolierten natürlichen At-DFCC-33 (1) [8] Somit war das nichtfluoreszierende Produkt der säurekatalysierten Isomerisierung des At-DFCC-33 nicht unterscheidbar von At-DNCC-33, dem Hauptabbauprodukt von Chl in seneszenten Blättern von Wildtypus A. thaliana. [6,8] Die Entdeckung eines natürlichen 1,19-Dioxobilin-artigen FCCs (des DFCC 1), wie auch seine hier beschriebe selektive Isomerisierung zum DNCC 2,u nterstützt die essenzielle Rolle solcher kurzlebiger fluoreszierender Zwischenprodukte im Chl-Abbau in hçheren Pflanzen, wie etwa im Wildtypus von A. thaliana.I nteressanterweise konnte kürz-lich in einer Arbeit über die Chl-Kataboliten in seneszenten Blättern einer A.-thaliana-Mutante ein modifizierter "fluoreszierender" 1,19-Dioxobilin-Typ Chl-Katabolit (ein FDCC) identifiziert werden, der eine rätselhafte zusätzliche Hydroxymethylgruppe trug.D ie gleiche Modifikation konnte auch in einigen NDCCs,s owohl dieser Mutante [11] als auch des Wildtypus von A. thaliana beobachtet werden. [8] Der At-DFCC-33 (1)w urde hingegen als einziges Stereoisomer erhalten und es wurde kein Epimer von 1 im Blattextrakt gefunden.…”
unclassified
“…[5a, 6,11] Dieses stereochemische Ergebnis steht aber im Widerspruch zur Stereochemie des DNCCs aus dem Spitzahorn, [5b] dessen Bildung somit noch einer alternativen Erklärung bedarf.…”
unclassified
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