Pease R J, Harrison G B, Scott J
Division of Molecular Medicine, MRC Clinical Research Centre, Harrow, UK.
Nature. 1991 Oct 3;353(6343):448-50. doi: 10.1038/353448a0.
Apolipoprotein (apo) B100 is required for the distribution of hepatic triglyceride to peripheral tissues as very-low-density lipoproteins. The translocation of apo B100 into the endoplasmic reticulum (ER) and its subsequent assembly into lipoprotein particles is of particular interest as the protein is both very large (relative molecular mass 512,000) and insoluble in water. It has been proposed that apo B translocation occurs in discrete stages and is completed post-translationally. Several sites of arrest of translocation were reported to be present in apo B15 (the N-terminal 15% of the protein). We have re-examined this question by in vitro translation coupled with translocation into microsomes, and find no evidence for transmembrane segments in truncated apo B proteins. Translocated apo B17 is strongly associated with the membrane of the ER, being only partially releasable with alkaline carbonate, and remaining bound to the microsomes following disruption with saponin. The efficient binding of short segments of apo B, despite the absence of transmembrane domains, suggests that apo B is cotranslationally inserted into the inner leaflet of the ER. This will obviate problems caused by the size and insolubility of apo B100, because the growing hydrophobic protein chains will never exist in a lipid-free form during translocation. From the inner leaflet, apo B in association with membrane-derived lipid can bud into the lumen of the ER to form nascent lipoprotein particles.
载脂蛋白(apo)B100是肝脏甘油三酯以极低密度脂蛋白形式分布到外周组织所必需的。apo B100向内质网(ER)的转运及其随后组装成脂蛋白颗粒特别引人关注,因为该蛋白既非常大(相对分子质量512,000)又不溶于水。有人提出apo B转运分离散阶段进行,并且在翻译后完成。据报道,在apo B15(该蛋白的N端15%)中存在几个转运停滞位点。我们通过体外翻译并结合转运到微粒体中重新研究了这个问题,未在截短的apo B蛋白中发现跨膜片段的证据。转运的apo B17与内质网膜紧密结合,仅部分可被碱性碳酸盐释放,在用皂苷破坏后仍与微粒体结合。尽管没有跨膜结构域,但apo B短片段的有效结合表明apo B是共翻译插入到内质网的内小叶中的。这将避免由apo B100的大小和不溶性引起的问题,因为在转运过程中不断增长的疏水蛋白链永远不会以无脂形式存在。在内小叶中,与膜衍生脂质结合的apo B可以芽生到内质网腔中形成新生脂蛋白颗粒。