Protein Function Group, Institute of Integrative Biology, University of Liverpool, Liverpool, United Kingdom.
PLoS One. 2011;6(12):e28902. doi: 10.1371/journal.pone.0028902. Epub 2011 Dec 19.
Immobilized combinatorial peptide libraries have been advocated as a strategy for equalization of the dynamic range of a typical proteome. The technology has been applied predominantly to blood plasma and other biological fluids such as urine, but has not been used extensively to address the issue of dynamic range in tissue samples. Here, we have applied the combinatorial library approach to the equalization of a tissue where there is also a dramatic asymmetry in the range of abundances of proteins; namely, the soluble fraction of skeletal muscle. We have applied QconCAT and label-free methodology to the quantification of the proteins that bind to the beads as the loading is progressively increased. Although some equalization is achieved, and the most abundant proteins no longer dominate the proteome analysis, at high protein loadings a new asymmetry of protein expression is reached, consistent with the formation of complex assembles of heat shock proteins, cytoskeletal elements and other proteins on the beads. Loading at different ionic strength values leads to capture of different subpopulations of proteins, but does not completely eliminate the bias in protein accumulation. These assemblies may impair the broader utility of combinatorial library approaches to the equalization of tissue proteomes. However, the asymmetry in equalization is manifest at either low and high ionic strength values but manipulation of the solvent conditions may extend the capacity of the method.
固定化组合肽文库已被提倡作为一种均衡典型蛋白质组动态范围的策略。该技术主要应用于血浆和其他生物体液,如尿液,但尚未广泛用于解决组织样本中动态范围的问题。在这里,我们将组合文库方法应用于一种组织中,该组织中蛋白质丰度的范围也存在显著的不对称性;即骨骼肌的可溶性部分。我们应用 QconCAT 和无标记方法来定量结合到珠子上的蛋白质,随着加载量的逐渐增加。尽管实现了一些均衡,并且最丰富的蛋白质不再主导蛋白质组分析,但在高蛋白质负载下,达到了新的蛋白质表达不对称性,与热休克蛋白、细胞骨架元件和其他蛋白质在珠子上形成复杂组装一致。在不同离子强度值下进行加载会导致捕获不同的蛋白质亚群,但不能完全消除蛋白质积累的偏差。这些组装可能会损害组合文库方法在组织蛋白质组均衡中的更广泛应用。然而,在低离子强度和高离子强度值下,均衡的不对称性表现明显,但溶剂条件的操作可能会扩展该方法的能力。