1.重組蛋白表達(dá)體系
MCE 重組蛋白表達(dá)體系主要有:大腸桿菌,酵母細(xì)胞,昆蟲細(xì)胞和哺乳動(dòng)物
細(xì)胞。
2.重組蛋白純度和濃度測(cè)定
重組蛋白純度測(cè)定方法:a. SDS-PAGE 測(cè)定法;b. HPLC 測(cè)定法;c. 銀染測(cè)
定法。
重組蛋白濃度測(cè)定方法:a. Bradford 蛋白定量測(cè)定法;b. BCA 蛋白定量測(cè)
定法;c. SDS-PAGE 蛋白定量測(cè)定法。
3.重組蛋白表達(dá)體系對(duì)比
表達(dá)體系 |
優(yōu)缺點(diǎn) |
原核體系 |
繁殖快、成本低,產(chǎn)量高,但不能進(jìn)行糖基化修飾,常為包涵體 |
哺乳動(dòng)物細(xì)胞 |
結(jié)構(gòu)與天然蛋白最接近,完善的翻譯后加工,活性更好,但表達(dá)水平較低,周期長,技術(shù)要求高 |
酵母細(xì)胞 |
易操作,蛋白背景弱,適合大規(guī)模生產(chǎn),便于純化,但存在產(chǎn)量不高以及糖基化達(dá)不到要求等問題 |
昆蟲細(xì)胞 |
功能與天然蛋白相似,對(duì)于部分有毒性或較難表達(dá)蛋白有優(yōu)勢(shì),但糖基化程度低,形式比較單一,活性不如哺乳動(dòng)物細(xì)胞表達(dá)系統(tǒng) |
4.重組蛋白表達(dá)體系選擇
研究目的 |
蛋白要求 |
最適表達(dá)系統(tǒng) |
用作抗原,獲得特異性抗體 |
純度>80%,不需要蛋白修飾或天然活性,可帶標(biāo)簽 |
原核表達(dá)體系 |
用于檢測(cè)蛋白質(zhì)結(jié)晶及晶體結(jié)構(gòu)研究 |
純度>95%,濃度通常在 10 mg/mL |
2/3 是原核表達(dá)體系,1/3 是昆蟲細(xì)胞表達(dá)體系與哺乳動(dòng)物細(xì)胞表達(dá)體系 |
蛋白的功能研究 |
需要保存蛋白的天然活性 |
原核表達(dá)體系和真核表達(dá)體系 |
用于藥物研究的蛋白質(zhì) |
一般要求盡量保存天然序列,具有天然活性 |
真核表達(dá)體系 |
5.重組蛋白開蓋使用前處理
為防止凍干粉產(chǎn)品的粉末沾在管壁或管蓋上,使用前請(qǐng)勿開蓋,離心(約
13000 rpm)處理 20-30 秒,使附于管蓋或管壁的蛋白收集于管底。MCE 保
證每管產(chǎn)品的蛋白總量達(dá)到標(biāo)示含量。
6.重組蛋白復(fù)溶
a. 使用前先離心(約 13000 rpm)處理 20-30 秒,使附于管蓋或管壁的蛋白
收集于管底。
b. 嚴(yán)格依據(jù)說明書,使用推薦的溶液將蛋白凍干粉溶解至推薦的濃度。大
多數(shù)重組蛋白建議溶解在滅菌超純水中,濃度不低于 100 μg/mL,以便于
后續(xù)進(jìn)一步稀釋至工作濃度。
c. 用移液槍輕吹混勻,或?qū)⒐苌w蓋好后輕柔顛倒數(shù)次進(jìn)行混勻,低速離心
數(shù)秒。
d. 復(fù)溶后的重組蛋白在室溫放置數(shù)分鐘,以保證蛋白能夠充分溶解。
7.重組蛋白儲(chǔ)存
由于每次凍融都會(huì)造成蛋白的部分變性,因此建議客戶收到產(chǎn)品后適量分
裝避免反復(fù)凍融。
a. 短期儲(chǔ)存:
凍干粉狀態(tài)產(chǎn)品在室溫下存放 3 周,不影響活性。
復(fù)溶后的產(chǎn)品在 4℃ 可穩(wěn)定儲(chǔ)存 1-2 周。
b. 長期儲(chǔ)存:
凍干粉狀態(tài)產(chǎn)品在 -20℃ 下,可穩(wěn)定保存至少一年;推薦 -80℃ 長期保存,
以獲得更穩(wěn)定性能的產(chǎn)品。
可選擇包含一定濃度載體蛋白(0.1% BSA, 5% HSA, 10% FBS,或 5% 海
藻糖)的溶液或培養(yǎng)基復(fù)溶產(chǎn)品,分裝后凍存于 -20℃ 下,可保存至少三個(gè)
月;推薦 -80℃ 長期保存,以獲得更穩(wěn)定性能的產(chǎn)品。
注:分裝凍存時(shí),蛋白濃度不低于 100 ng/μL,且每管的體積不可小于 20
μL。
8.重組蛋白標(biāo)簽影響
蛋白標(biāo)簽指重組蛋白制備過程中與目的蛋白融合表達(dá)的蛋白或多肽。MCE
的重組蛋白產(chǎn)品大部分為無標(biāo)簽狀態(tài),但少數(shù)重組蛋白產(chǎn)品因?yàn)椴煌康?br />
需要加有標(biāo)簽。
a. 標(biāo)簽利于蛋白純化。
b. 當(dāng)目的蛋白無特定抗體直接鑒定,可利用標(biāo)簽進(jìn)行 Western Blot 或
ELISA 分析方法鑒定。
c. Fc 標(biāo)簽可以提升重組蛋白的半衰期以提高分子的穩(wěn)定性,同時(shí)也能夠促
進(jìn)重組蛋白形成活性二聚體。
重組蛋白標(biāo)簽對(duì)蛋白的生物學(xué)活性影響存在未知結(jié)論,但對(duì)大部分檢測(cè)應(yīng)
用中,重組蛋白的標(biāo)簽對(duì)蛋白本身生物學(xué)活性并無影響,所以無需移除。
MCE 對(duì)重組蛋白產(chǎn)品都已經(jīng)做過生物學(xué)活性檢測(cè)并將數(shù)據(jù)公示于 COA 中。
9. 重組蛋白活力值與計(jì)算方法
MCE 重組蛋白的生物學(xué)活性 (ED50) 測(cè)定數(shù)據(jù)在 COA 中可以獲得。ED50 是
Effective Dose 50 的縮寫,是可誘導(dǎo) 50% 最大反應(yīng)的蛋白濃度 (ng/mL)。
計(jì)算公式如下:
![](data:image/png;base64,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)
MCE 的重組蛋白產(chǎn)品并未采用 WHO (National Institute for Biological
Standards and Control) 設(shè)定的標(biāo)準(zhǔn)來測(cè)定活力值,以上計(jì)算公式并不適
用于“International Units”和“ED50”的轉(zhuǎn)換關(guān)系,需要采用國際標(biāo)準(zhǔn)品
對(duì)比相同實(shí)驗(yàn)獲得該重組蛋白的 IU 值。
10. 重組蛋白 ED50 值的批間差
不同批次的產(chǎn)品或不同實(shí)驗(yàn)方法的測(cè)定都會(huì)導(dǎo)致重組蛋白產(chǎn)品的 ED50 值變
化,我們推薦客戶根據(jù)自己的實(shí)驗(yàn)測(cè)定得到最合適的實(shí)際 ED50 值。
11. 重組蛋白應(yīng)用方案
MCE 重組蛋白產(chǎn)品的 COA 中顯示的實(shí)驗(yàn)方案只是確認(rèn)該產(chǎn)品的 ED50 值,
但并不與終端客戶的不同類型實(shí)驗(yàn)結(jié)果存在等效性。如果客戶需要應(yīng)用在
不同于本公司產(chǎn)品測(cè)試的實(shí)驗(yàn)方法時(shí),我們建議客戶通過實(shí)際測(cè)試獲得最
佳 ED50 值。
12.重組蛋白的種屬交叉活性
重組蛋白的種屬交叉活性需要根據(jù)具體產(chǎn)品而定;建議盡量選擇對(duì)應(yīng)種屬
的重組蛋白。如實(shí)在無法匹配種屬,以下信息供參考:
a. 大多數(shù)人細(xì)胞因子對(duì)小鼠細(xì)胞有效 (僅少數(shù)例外)。
b. 多數(shù)小鼠細(xì)胞因子對(duì)人細(xì)胞有效,但特異性可能不強(qiáng)。如小鼠的表皮生
長因子(EGF)對(duì)人的表皮細(xì)胞有活性,對(duì)人的其他種類細(xì)胞可能也有作用。
c. 干擾素、GM-CSF、IL-3、IL-4 具有種屬特異性,即重組人的這些細(xì)胞因
子只能作用于人細(xì)胞,對(duì)小鼠和大鼠等其他種而重組小鼠的這些細(xì)胞因子
也僅用于小鼠,對(duì)人的細(xì)胞無效。
d. 成纖維細(xì)胞生長因子 (FGFs)、神經(jīng)營養(yǎng)素 ( Neurotrophins,如 BDNGF、
GDNF、CNTF、β-NGF 等)、TGF-β 等高度保守,各種屬間交叉活性強(qiáng)。