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AB109939

重组人 GLOD4 蛋白 (His tag N-Terminus)

Recombinant Human GLOD4 protein (His tag N-Terminus)

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Recombinant Human GLOD4 protein (His tag N-Terminus) is a Human Full Length protein, in the 1 to 298 aa range, expressed in Escherichia coli, with >95%, suitable for SDS-PAGE, Mass Spec.

查看别名

C17orf25, CGI-150, My027, GLOD4, Glyoxalase domain-containing protein 4

1 Images
SDS-PAGE - Recombinant Human GLOD4 protein (His tag N-Terminus) (AB109939)
  • SDS-PAGE

Unknown

SDS-PAGE - Recombinant Human GLOD4 protein (His tag N-Terminus) (AB109939)

15% SDS-PAGE analysis of 3μg ab109939.

关键信息

纯度

>95% SDS-PAGE

ab109939 was purified using conventional chromatography.

表达系统

Escherichia coli

标签

His tag N-Terminus

应用

SDS-PAGE, Mass Spec

applications

生物活性

No

访问

Q9HC38

不含动物源

No

不含载体蛋白

No

种属

Human

存储溶液

pH: 8 Constituents: 20% Glycerol (glycerin, glycerine), 0.316% Tris HCl, 0.058% Sodium chloride, 0.0154% (R*,R*)-1,4-Dimercaptobutan-2,3-diol

storage-buffer

反应性数据

{ "title": "Reactivity Data", "filters": { "stats": ["", "Reactivity", "Dilution Info", "Notes"] }, "values": { "SDS-PAGE": { "reactivity":"TESTED_AND_REACTS", "dilution-info":"", "notes":"<p></p>" }, "Mass Spec": { "reactivity":"TESTED_AND_REACTS", "dilution-info":"", "notes":"<p></p>" } } }

序列信息

[{"linker":null,"sequence":"MGSSHHHHHHSSGLVPRGSHMAARRALHFVFKVGNRFQTARFYRDVLGMKVLRHEEFEEGCKAACNGPYDGKWSKTMVGFGPEDDHFVAELTYNYGVGDYKLGNDFMGITLASSQAVSNARKLEWPLTEVAEGVFETEAPGGYKFYLQNRSLPQSDPVLKVTLAVSDLQKSLNYWCNLLGMKIYEKDEEKQRALLGYADNQCKLELQGVKGGVDHAAAFGRIAFSCPQKELPDLEDLMKRENQKILTPLVSLDTPGKATVQVVILADPDGHEICFVGDEAFRELSKMDPEGSKLLDDAMAADKSDEWFAKHNKPKASG","proteinLength":"Full Length","predictedMolecularWeight":"35.3 kDa","actualMolecularWeight":null,"aminoAcidEnd":298,"aminoAcidStart":1,"nature":"Recombinant","expressionSystem":"Escherichia coli","accessionNumber":"Q9HC38","tags":[{"tag":"His","terminus":"N-Terminus"}]}]

性能和储存信息

形式
Liquid
运输条件
Blue Ice
推荐的短期储存条件
-20°C
推荐的长期储存条件
-20°C
分装信息
Upon delivery aliquot
储存信息
Avoid freeze / thaw cycle
False

补充信息

This supplementary information is collated from multiple sources and compiled automatically.

GLOD4 also known as Glyoxalase Domain Containing 4 is a protein with a significant role in cellular processes. It has a molecular mass of approximately 18 kDa. This protein expresses mainly in the liver brain and kidneys indicating its involvement in multiple organ systems. GLOD4 contains characteristic glyoxalase domains which facilitate its biochemical actions. Studies suggest that GLOD4 structurally participates in stress response and detoxification pathways due to these domain properties.
Biological function summary

Glyoxalase Domain Containing 4 plays important roles in the detoxification of methylglyoxal a byproduct of glycolysis that can be harmful at high levels. GLOD4 does not function alone; it acts as part of the glyoxalase system which includes other Gly and Gly-related enzymes to efficiently convert toxic metabolites into non-toxic substances. Its enzymatic actions support the maintenance of cellular homeostasis and protection against glycation end-products that are damaging to cellular structures.

Pathways

Glyoxalase Domain Containing 4 operates within key metabolic routes like the glycolytic pathway and the detoxification pathway. It collaborates with enzymes like Glyoxalase I and Glyoxalase II in the aforementioned glyoxalase system to perform its roles. The action within these pathways helps reduce oxidative stress aiding in the prevention of cellular damage. GLOD4’s interaction with these enzymes and pathways highlights its importance in maintaining cellular integrity under physiological and stress conditions.

Elevated Glyoxalase Domain Containing 4 expression links to conditions such as diabetes and neurodegenerative disorders. Changes in GLOD4 levels often correspond with disruptions in methylglyoxal metabolism and oxidative stress common in these diseases. Studies also indicate relationships among GLOD4 insulin signaling and proteins such as Glyoxalase I suggesting a connection to the metabolic disturbances found in diabetes. GLOD4's involvement in detoxification pathways also affects the pathogenesis of neurodegenerative diseases potentially influencing cell survival and neuroprotection mechanisms.

常规信息

序列相似性

Belongs to the glyoxalase I family.

产品实验方案

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