glycosylation

the use of pngase f and mass spec analysis of n-glycosylation
图片尺寸640x516
(图谱来源于the immunoregulatory roles of antibody glycosylation)
图片尺寸600x354
human glycosylation array 1000
图片尺寸579x350
杂志 cancer cell 上发表文章「removal of n-linked glycosylation
图片尺寸1566x1259
蛋白质糖基化修饰主要分为4种:n-糖基化(n-linked glycosylation),o
图片尺寸1080x541
肽聚糖合成步骤
图片尺寸1161x758
2n-linked glycosylation(n-糖基化)ppt
图片尺寸1080x810
在蛋白质的多种翻译后修饰中,糖基化(glycosylation)是非常重要的一种
图片尺寸540x523
data-lemmaid="7911373">n-连接糖基化 /a>(n-linked glycosylation)
图片尺寸805x445
肿瘤糖生物学团队在褪黑素调控糖基化修饰抑制膀胱肿瘤取得重要进展
图片尺寸540x606
synthesis of glycosylphosphatidylinositol (gpi)-ancho
图片尺寸392x255
在蛋白质的多种翻译后修饰中,糖基化(glycosylation)是非常重要的一种
图片尺寸720x558
吉利德买断的抗体药物靶点ccr8靶点梳理
图片尺寸516x338
华中农大近期科学研究进展
图片尺寸1048x703
福建农林大学许卫锋团队揭示n糖基化参与拟南芥碱胁迫应答的新机制
图片尺寸588x542
n-连接糖基化(n-linked glycosylation) 是一种新生肽链的共翻译或
图片尺寸1000x570
glycosylation intermediates studied using low temperature
图片尺寸1950x802
【4周达】glycosylation : methods and protocols
图片尺寸800x800
a missense mutation of the gene encoding synaptic
图片尺寸1772x1859
背靠背研究:当癌细胞不能自产脂肪时,会吞噬掉更多营养物质
图片尺寸532x377