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由来生物
rabbit
品質水準
結合体
unconjugated
抗体製品の状態
affinity isolated antibody
抗体製品タイプ
primary antibodies
クローン
polyclonal
形状
lyophilized powder
化学種の反応性
mouse, human, rat
テクニック
immunohistochemistry: suitable using rat brain sections
western blot: 1:300 using rat brain lysates
UniProtアクセッション番号
輸送温度
dry ice
保管温度
−20°C
ターゲットの翻訳後修飾
unmodified
遺伝子情報
human ... KCNH7(90134)
mouse ... Kcnh7(170738)
rat ... Kcnh7(170739)
詳細
The gene Kcnh7 (potassium voltage-gated channel subfamily H member 7), also referred to as erg3, encodes a subunit of ether-à-go-go related (erg) K+ channels. The erg K+ channels are part of the EAG (ether-à-go-go) family of voltage-gated K+ channels. The encoded protein is found to be expressed in the apical membrane of the retinal pigment epithelium.
特異性
The KV11.3 antibody is directed against an intracellular epitope of C-terminal part of KV11.3.
免疫原
synthetic peptide CPEFLDLEKSKLKSKE corresponding to amino acids 1108-1123 of rat KV11.3.
生物化学的/生理学的作用
The gene Kcnh7 (potassium voltage-gated channel subfamily H member 7) encodes a voltage gated K+ channel that modulates the membrane potential in its rested and activated state. In the nervous system, it may participate in the regulation of neuronal excitability. The erg3 channels have relatively negative activation threshold compared to erg1 and erg2. They are capable of recycling K+ ions to the subretinal space in the dark and contribute to the maintenance of the resting membrane potential.
物理的形状
Lyophilized powder containing phosphate buffered saline, pH 7.4, 1% BSA and 0.025% sodium azide.
再構成
Reconstitute the lyophilized vial with 50 μL or 200 μL deionized water, depending on package size. Further dilutions should be made using a carrier protein such as BSA (1-3%).
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保管分類コード
10 - Combustible liquids
試験成績書(COA)
製品のロット番号・バッチ番号を入力して、試験成績書(COA) を検索できます。ロット番号・バッチ番号は、製品ラベルに「Lot」または「Batch」に続いて記載されています。
Functional properties of human neuronal Kv11 channels.
Pflugers Archiv : European Journal of Physiology, 458, 689-700 (2009)
PloS one, 6(12), e29490-e29490 (2011-12-30)
In response to light, most retinal neurons exhibit gradual changes in membrane potential. Therefore K+ channels that mediate threshold currents are well-suited for the fine-tuning of signal transduction. In the present study we demonstrate the expression of the different Kv11
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