School of Systems Biomedical Science, Soongsil University, Seoul, 06978, Republic of Korea.
Entomology Division, Department of Agricultural Biotechnology, College of Agriculture and Life Science, Seoul National University, Seoul, 08826, Republic of Korea.
Sci Rep. 2019 Jan 10;9(1):48. doi: 10.1038/s41598-018-36913-z.
Human head and body lice attach their eggs respectively to human hair or clothing by female lice secreted glue that hardens into a nit sheath that protects the egg. In this study, a series of experiments were conducted to characterize the glue-like material of the nit sheath. Fourier transform infrared spectroscopy on embryo-cleared nit showed proteinaceous amide I bands. With this result, we determined the amino acid composition of the nit sheath proteins and performed similarity search against the protein products of the body louse genome to identify the candidate nit sheath proteins. The identified two homologous proteins newly named as louse nit sheath protein (LNSP) 1 and LNSP2 are composed of three domains of characteristic repeating sequences. The N-terminal and middle domains consist of tandem two-residue repeats of Gln-Ala and Gly-Ala, respectively, which are expected to fold into β-strands and may further stack into β-sheets, whereas the C-terminal domain contains multiple consecutive Gln residues. Temporal and spatial transcription profiling demonstrated that both LNSP1 and LNSP2 are most predominantly expressed in the accessory gland of females of egg-laying stage, supporting that they indeed encode the nit sheath proteins. Further adhesive property of recombinant partial LNSP1 suggests that both LNSP1 and LNSP2 may act as glues.
人虱和体虱的雌性会分别将卵产在人发或衣物上,通过分泌的胶将卵黏附在上面,形成一层保护卵的脂质鞘。在这项研究中,我们进行了一系列实验来对脂质鞘中的胶状物质进行了分析。对去胚胎脂质鞘进行傅里叶变换红外光谱分析显示出蛋白酰胺 I 带。根据这一结果,我们确定了脂质鞘蛋白的氨基酸组成,并对体虱基因组的蛋白质产物进行了相似性搜索,以鉴定候选的脂质鞘蛋白。鉴定出的两种同源蛋白分别被重新命名为虱脂质鞘蛋白 1(LNSP1)和 LNSP2,它们由三个特征重复序列的结构域组成。N 端和中间结构域分别由 Gln-Ala 和 Gly-Ala 的串联两个残基重复组成,预计这些结构域会折叠成β-链,并可能进一步堆积成β-片层,而 C 端结构域则包含多个连续的 Gln 残基。时空转录谱分析表明,LNSP1 和 LNSP2 在产卵期雌虱的附腺中表达最为显著,这支持了它们确实编码脂质鞘蛋白的观点。重组部分 LNSP1 的粘附特性进一步表明,LNSP1 和 LNSP2 可能都具有粘性。