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Lj1g3v2095500.1

Overview

Field Value
Gene ID Lj1g3v2095500
Transcript ID Lj1g3v2095500.1
Lotus japonicus genome version MG20 v3.0
Description PREDICTED: 6-phosphofructokinase 3-like [Glycine max] gi|356515641|ref|XP_003526507.1|
Working Lj name n.a.

Sequence information

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

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Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
PANTHER 1 442 442 0
PANTHER 1 442 442 0
PIRSF 3 442 440 3.00E-210
Hamap 25 442 418 50.631
SUPERFAMILY 28 439 412 1.44E-121
Gene3D 34 314 281 1.40E-82
Pfam 97 402 306 2.20E-61
PRINTS 98 117 20 4.70E-25
PRINTS 182 198 17 4.70E-25
PRINTS 215 232 18 4.70E-25
PRINTS 233 251 19 4.70E-25
Coils 238 258 21
PRINTS 254 270 17 4.70E-25
PRINTS 311 323 13 4.70E-25

Gene function (GO predictions)

GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .

GO term Namespace Name Definition Relationships
Molecular function 6-phosphofructokinase activity Catalysis of the reaction: ATP + D-fructose-6-phosphate = ADP + D-fructose 1,6-bisphosphate.
Molecular function ATP binding Interacting selectively and non-covalently with ATP, adenosine 5'-triphosphate, a universally important coenzyme and enzyme regulator.
Biological process Fructose 6-phosphate metabolic process The chemical reactions and pathways involving fructose 6-phosphate, also known as F6P. The D-enantiomer is an important intermediate in glycolysis, gluconeogenesis, and fructose metabolism.
Biological process Glycolytic process The chemical reactions and pathways resulting in the breakdown of a carbohydrate into pyruvate, with the concomitant production of a small amount of ATP and the reduction of NAD(P) to NAD(P)H. Glycolysis begins with the metabolism of a carbohydrate to generate products that can enter the pathway and ends with the production of pyruvate. Pyruvate may be converted to acetyl-coenzyme A, ethanol, lactate, or other small molecules.

Expression data

Expression pattern

Expression pattern of Lj1g3v2095500.1, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

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Co-expressed genes

A list of the top 25 highly co-expressed genes of Lj1g3v2095500.1, powered by CORGI.

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