Rat Mitochondrial import receptor subunit TOM40B (TOMM40L) ELISA Kit

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AE13813RA
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Product Name Rat Mitochondrial import receptor subunit TOM40B (TOMM40L) ELISA Kit
Description The fungal preprotein translocase of the mitochondrial outer membrane (TOM complex) comprises import receptors Tom70, Tom20, and Tom22, import channel Tom40, and small Tom proteins Tom5, Tom6, and Tom7, which regulate TOM complex assembly. These components are conserved in mammals; unlike the other components, however, Tom5 and Tom6 remain unidentified in mammals. These small Tom proteins are associated with Tom40 in the TOM complex. Knockdown of Tom7, but not Tom5 and Tom6, strongly compromised stability of the TOM complex. Conversely, knockdown of hTom40 decreased the level of all small Tom proteins. Matrix import of preprotein was affected by double knockdown of any combination of small Tom proteins. These results indicate that human small Tom proteins maintain the structural integrity of the TOM complex. This assay has high sensitivity and excellent specificity for detection of Rat TOMM40L. No significant cross-reactivity or interference between Rat TOMM40L and analogues was observed.
Synonyms FLJ12770, RP11-297K8.10, TOMM40B, OTTHUMP00000032243|translocase of outer mitochondrial membrane 40 homolog-like
Method Sandwich ELISA
Detection Range Request Information
Sensitivity Request Information
Reactivity Rat
Sample Types Serum, Plasma, Other biological fluids.
Background The fungal preprotein translocase of the mitochondrial outer membrane (TOM complex) comprises import receptors Tom70, Tom20, and Tom22, import channel Tom40, and small Tom proteins Tom5, Tom6, and Tom7, which regulate TOM complex assembly. These components are conserved in mammals; unlike the other components, however, Tom5 and Tom6 remain unidentified in mammals. These small Tom proteins are associated with Tom40 in the TOM complex. Knockdown of Tom7, but not Tom5 and Tom6, strongly compromised stability of the TOM complex. Conversely, knockdown of hTom40 decreased the level of all small Tom proteins. Matrix import of preprotein was affected by double knockdown of any combination of small Tom proteins. These results indicate that human small Tom proteins maintain the structural integrity of the TOM complex.
Supplier Abebio

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