College of Natural and Applied Science, University of Houston-Victoria, Victoria, TX, USA.
School of Marine Biosciences, Kitasato University, Kanagawa, Japan.
Cell Stress Chaperones. 2023 Sep;28(5):583-594. doi: 10.1007/s12192-022-01260-6. Epub 2022 Feb 11.
The 70 kDa heat shock proteins (HSP70s) and the constitutive members of the HSP70 family (heat shock cognates; HSC70s) play essential roles in various biological processes. The number of hsp70/hsc70 in the database is rapidly increasing because of their importance and the automatic annotation of newly sequenced genomes. However, accumulating evidence indicates that neither hsp70 nor hsc70 forms a monophyletic gene family, raising the need to reconsider the annotation strategy based on the traditional concept of the inducible HSP70 and constitutive HSC70s. The main aim of this study is to establish a systematic scheme to annotate hsp70-like genes taking the latest phylogenetic insights into account. We cloned two hsp70s from the rotifer Brachionus plicatilis sensu stricto (s.s.), an emerging model in evolutionary genetics, and conducted a genome-wide screening of B. plicatilis s.s. hsp70s using the two sequences as queries. A total of 15 hsp70-like genes were found, and 7 of them encoded distant members of the HSP70 family, the function of which largely remains unknown. Eight canonical hsp70s were annotated according to a recently proposed nomenclature based on the molecular evolution: e.g., HSP70cA1/B1 for the cytosolic lineage, HSP70er1 for the endoplasmic reticulum lineage, and HSP70m1 for the mitochondrial lineage. The two cloned hsp70s, HSP70cB1 and HSP70cB2, ubiquitously increased their mRNA levels up to 7.5 times after heat treatment as assessed by semi-quantitative PCR, real-time PCR, and in situ hybridization. This systematic screening incorporating a reasonable update to the annotation strategy would provide a useful example for future HSP70 studies, especially those in non-traditional model organisms.
70kDa 热休克蛋白 (HSP70s) 和 HSP70 家族的组成成员 (热休克同源物;HSC70s) 在各种生物学过程中发挥着重要作用。由于其重要性和新测序基因组的自动注释,数据库中的 hsp70/hsc70 数量正在迅速增加。然而,越来越多的证据表明,无论是 hsp70 还是 hsc70,都没有形成一个单系基因家族,这就需要重新考虑基于传统诱导型 HSP70 和组成型 HSC70 概念的注释策略。本研究的主要目的是建立一种系统的方案,根据最新的系统发育见解来注释 hsp70 样基因。我们从轮虫褶皱臂尾轮虫 (Brachionus plicatilis sensu stricto,s.s.) 中克隆了两个 hsp70,轮虫是进化遗传学中的一个新兴模式生物,并使用这两个序列作为查询进行了 B. plicatilis s.s. hsp70 的全基因组筛选。共发现 15 个 hsp70 样基因,其中 7 个编码 HSP70 家族的远亲成员,其功能在很大程度上仍然未知。根据最近提出的基于分子进化的命名法,对 8 个典型的 hsp70 进行了注释:例如,HSP70cA1/B1 为细胞质谱系,HSP70er1 为内质网谱系,HSP70m1 为线粒体谱系。通过半定量 PCR、实时 PCR 和原位杂交评估,热处理后,两个克隆的 hsp70,HSP70cB1 和 HSP70cB2,其 mRNA 水平普遍增加了 7.5 倍。这种系统筛选结合了对注释策略的合理更新,将为未来的 HSP70 研究,特别是在非传统模式生物中的研究,提供一个有用的范例。