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Literature summary for 4.6.1.13 extracted from

  • Kloeppel, C.; Mueller, A.; Marker, S.; Simon, M.
    Two isoforms of eukaryotic phospholipase C in Paramecium affecting transport and release of GPI-anchored proteins in vivo (2009), Eur. J. Cell Biol., 88, 577-592.
    View publication on PubMed

Activating Compound

Activating Compound Comment Organism Structure
ethanol all PLC1-6 are activated in salt/ethanol extractions Paramecium tetraurelia
Salt all PLC1-6 are activated in salt/ethanol extractions Paramecium tetraurelia

Cloned(Commentary)

Cloned (Comment) Organism
cloned into the L4440 vector, transformation of plasmids into Escherichia coli HT115DE3 Paramecium tetraurelia

Inhibitors

Inhibitors Comment Organism Structure
p-chloromercuriphenylsulfonic-acid
-
Paramecium tetraurelia

Organism

Organism UniProt Comment Textmining
Paramecium tetraurelia
-
expressing serotype 51A and 51D
-
Paramecium tetraurelia d4-2
-
expressing serotype 51A and 51D
-

Substrates and Products (Substrate)

Substrates Comment Substrates Organism Products Comment (Products) Rev. Reac.
additional information all PLCs are able to cleave GPI anchors Paramecium tetraurelia ?
-
?
additional information all PLCs are able to cleave GPI anchors Paramecium tetraurelia d4-2 ?
-
?

Synonyms

Synonyms Comment Organism
PI-phospholipase C
-
Paramecium tetraurelia
PI-PLC
-
Paramecium tetraurelia
PLC1
-
Paramecium tetraurelia
PLC2
-
Paramecium tetraurelia
PLC3
-
Paramecium tetraurelia
PLC4
-
Paramecium tetraurelia
PLC5
-
Paramecium tetraurelia
PLC6
-
Paramecium tetraurelia

Expression

Organism Comment Expression
Paramecium tetraurelia PLC5 reveals a drastic lower mRNA level compared to all other PLCs, this gene shows characteristics of a non-functional pseudogene. Adequate knockdown levels for almost all PLCs in the RNAi lines, except for PLC5 with only 53.85% down
Paramecium tetraurelia PLC2, PLC4 and PLC6 show the highest mRNA levels up

General Information

General Information Comment Organism
malfunction with PLC2 and PLC6, RNAi phenotypes show strong defects in release of GPI-anchored surface proteins in vivo Paramecium tetraurelia