State Key Laboratory of Biocontrol, Guangdong Key Laboratory of Plant Resources, School of Life Sciences , Sun Yat-sen University , Guangzhou 510275 , China.
State Key Laboratory of Proteomics, National Center for Protein Sciences (Beijing), Beijing Institute of Lifeomics , Beijing Proteome Research Center , Beijing 102206 , China.
J Proteome Res. 2018 Dec 7;17(12):4178-4185. doi: 10.1021/acs.jproteome.8b00398. Epub 2018 Oct 16.
In 2012, the Chromosome-centric Human Proteome Project (C-HPP) launched an investigation for missing proteins (MPs) to complete the Human Proteome Project (HPP). The majority of the MPs were distributed in low-molecular-weight (LMW) ranges, especially from 0 to 40 kDa. LMW protein identification is challenging, owing to their short length, low abundance, and hydrophobicity. Furthermore, many sequences from trypsin digestion are unlikely to yield detectable peptides or a reasonable quality of MS spectrum. Therefore, we focused on small MPs by combining LMW protein enrichment and a pair of complementary proteases strategy with trypsin and LysargiNase for human testis samples. In-depth testis LMW protein profiling resulted in the identification of 4063 proteins, of which 2565 were LMW proteins and 1130 had pairs of peptides generated from both trypsin and LysargiNase. This provided additional mass spectral evidence of further verification of small MPs. Finally, two MPs were verified from the seven MP candidates. One of them, Q8N688 , was verified with two series of continuous and complementary b/y-product ions from the pairs of spectra for tryptic and LysargiNase digested peptides after the "mirror spectrum" matching. This make the confident identification of the representative peptides for the target MPs. On the contrary, the two verified peptides for Q86WR6 were identified with the same strategy from the gel-separation and gel-elution samples, respectively. Although the other five MP candidates showed high-quality spectra, they could not be sufficiently distinguished as PE1s and require further verification. All MS data sets have been deposited in the ProteomeXchange with identifier PXD010093.
2012 年,染色体中心人类蛋白质组计划(C-HPP)启动了一项针对缺失蛋白(MPs)的调查,以完成人类蛋白质组计划(HPP)。大多数 MPs 分布在低分子量(LMW)范围内,特别是在 0 到 40 kDa 之间。由于其长度短、丰度低和疏水性,LMW 蛋白质的鉴定具有挑战性。此外,许多来自胰蛋白酶消化的序列不太可能产生可检测的肽或合理质量的 MS 谱。因此,我们专注于小 MPs,采用 LMW 蛋白质富集和一对互补蛋白酶策略,结合胰蛋白酶和 LysargiNase 用于人睾丸样本。深入的睾丸 LMW 蛋白质分析导致鉴定了 4063 种蛋白质,其中 2565 种是 LMW 蛋白质,1130 种有来自胰蛋白酶和 LysargiNase 的两种肽对。这为进一步验证小 MPs 提供了额外的质谱证据。最后,从七个 MPs 候选物中验证了两个 MPs。其中之一,Q8N688,通过对胰蛋白酶和 LysargiNase 消化肽的谱对进行“镜像谱”匹配后,从两种连续且互补的 b/y-产物离子系列中得到了两个系列的连续且互补的 b/y-产物离子,得到了验证。这使得目标 MPs 的代表性肽的置信鉴定成为可能。相反,Q86WR6 的两个验证肽是通过凝胶分离和凝胶洗脱样品分别采用相同的策略鉴定的。尽管其他五个 MPs 候选物显示出高质量的谱图,但它们不能被充分区分作为 PE1s,需要进一步验证。所有 MS 数据集都已在 ProteomeXchange 中以标识符 PXD010093 存储。