Schenkman S, Couture E, Schwartz M
J Bacteriol. 1983 Sep;155(3):1382-92. doi: 10.1128/jb.155.3.1382-1392.1983.
LamB protein is involved in the transport of maltose across the outer membrane and constitutes the receptor for phage lambda. In this study we characterized six previously described anti-LamB monoclonal antibodies (mAbs). Four of these, the E-mAbs, recognized determinants that were exposed at the cell surface, whereas the other two, the I-mAbs, recognized determinants which were not exposed. Competition experiments demonstrated that the domains recognized by these two classes of mAbs were completely distinct. In addition, the E-mAbs prevented LamB from neutralizing phage lambda in vitro and protected LamB against proteolytic degradation, whereas the I-mAbs had no such effects. The E-mAbs have been shown previously to constitute two classes: some E-mAbs inhibit maltose transport in vivo, and others do not. Immunoelectron microscopy demonstrated that the I-mAbs also define at least two types of determinants. One of these, which is accessible in membrane fragments from a mutant (lpp) devoid of lipoprotein but not in membrane fragments from an lpp+ strain, probably corresponds to a region of LamB that is involved in the interactions with peptidoglycan. The other determinant, which is fully accessible in LamB-peptidoglycan complexes and in LamB-containing phospholipid vesicles but only slightly accessible in membrane fragments from an lpp mutant, is probably located very close to the inner surface of the outer membrane. LamB also contains at least one additional determinant, which (i) is exposed at the inner surface of the membrane, (ii) is accessible to antibodies in membrane fragments from an lpp+ strain, and (iii) may be involved in the interaction of LamB with the periplasmic maltose-binding protein.
LamB蛋白参与麦芽糖跨外膜的转运,并构成噬菌体λ的受体。在本研究中,我们对六种先前描述的抗LamB单克隆抗体(mAb)进行了表征。其中四种,即E-mAb,识别暴露于细胞表面的决定簇,而另外两种,即I-mAb,识别未暴露的决定簇。竞争实验表明,这两类mAb识别的结构域完全不同。此外,E-mAb可阻止LamB在体外中和噬菌体λ,并保护LamB免受蛋白水解降解,而I-mAb则没有这种作用。先前已证明E-mAb可分为两类:一些E-mAb在体内抑制麦芽糖转运,而另一些则不然。免疫电子显微镜显示,I-mAb也至少定义了两种类型的决定簇。其中一种在缺乏脂蛋白的突变体(lpp)的膜片段中可及,但在lpp+菌株的膜片段中不可及,可能对应于LamB中与肽聚糖相互作用的区域。另一种决定簇在LamB-肽聚糖复合物和含LamB的磷脂囊泡中完全可及,但在lpp突变体的膜片段中仅略微可及,可能位于非常靠近外膜内表面的位置。LamB还至少包含一个额外的决定簇,该决定簇(i)暴露于膜的内表面,(ii)在lpp+菌株的膜片段中可被抗体识别,(iii)可能参与LamB与周质麦芽糖结合蛋白的相互作用。