MS | Malate synthase, (glyoxysomal)
AS19 4295 | Clonality: Polyclonal | Host: Rabbit | Reactivity: Nicotiana tabacum

Data sheet | Product citations | Protocols | Add review |
Product Information
Host
Rabbit
Clonality
Polyclonal
Purity
Serum
Format
Lyophilized
Quantity
50 ĩl
Reconstitution
For reconstitution add 50 ĩl, of sterile water
Storage
Store lyophilized/reconstituted at -20°C; once reconstituted make aliquots to avoid repeated freeze-thaw cycles. Please remember to spin the tubes briefly prior to opening them to avoid any losses that might occur from material adhering to the cap or sides of the tube.
Tested applications
Western blot (WB)
Recommended dilution
1 : 1000 (WB)
Expected | apparent MW
65 kDa
Reactivity
Confirmed reactivity
Nicotiana tabacum
Predicted reactivity
Arabidopsis thaliana, Cajanus cajan, Cinnamomum micranthum f. kanehirae, Cucumis sativus, Cucurbita maxima, Fagus sylvatica, Glycine max, Jatropha curcas, Morus notabilis, Mucuna pruriens, Parasponia andersonii, Populus alba x tremula, Theobroma cacao, Trema orientale
Species of your interest not listed? Contact us
Species of your interest not listed? Contact us
Not reactive in
Sorghum bicolor
Application examples
Additional information
Experimental contitions:
5 µg of total protein extracted freshly from 3-4 weeks old plant leaves with a blender at 4 °C in 300 mM Sorbitol, 50 mM HEPES, 5mM MgCl2. Separated on 10 % SDS-PAGE and blotted 1h to PVDF, semi-dry. Blot was blocked with 6 % milk for 1h 4°C with agitation. Blot was incubated in the primary antibody at a dilution of 1: 1 000 ON at 4°C with agitation.
According to South et. al (2019).
5 µg of total protein extracted freshly from 3-4 weeks old plant leaves with a blender at 4 °C in 300 mM Sorbitol, 50 mM HEPES, 5mM MgCl2. Separated on 10 % SDS-PAGE and blotted 1h to PVDF, semi-dry. Blot was blocked with 6 % milk for 1h 4°C with agitation. Blot was incubated in the primary antibody at a dilution of 1: 1 000 ON at 4°C with agitation.
According to South et. al (2019).
Background
Background
Malate synthase is involved in the synthesis of (S)-malate from isocitrate, where it catalyses the reaction: acetyl-CoA + glyoxylate + H(2)O = (S)-malate + CoA + H(+). This is part of the glyoxylate cycle, which is itself part of carbohydrate metabolism.
Product citations
Selected references
South et. al (2019). Synthetic glycolate metabolism pathways stimulate crop growth and productivity in the field. Science 2019 Jan 4;363(6422), DOI: 10.1126/science.aat9077
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