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Rab7b及其剪接异构体具有与Rab7a不同生物学功能的证据。

Evidence for Rab7b and Its Splice Isoforms Having Distinct Biological Functions from Rab7a.

作者信息

Wong Wing Hei, Liu Stephanie Z, Li Annie Shi Ru, Liu Xingyou, Manolson Morris F, Zirngibl Ralph A

机构信息

Faculty of Dentistry, University of Toronto, Toronto, ON M5G 1G6, Canada.

Department of Medical Biophysics, University of Toronto, Toronto, ON M5G 2C4, Canada.

出版信息

Int J Mol Sci. 2025 Mar 14;26(6):2610. doi: 10.3390/ijms26062610.

Abstract

The Rab family of small guanosine triphosphatases (GTPases) are nucleotide-dependent switches. Mutations in Rabs can result in human diseases. Rab7a and Rab7b transition from early endosomes to lysosomes and are presumed to function similarly. Most studies look at Rab7a, less on Rab7b, with the underlying assumption they function similarly. There have yet to be articles comparing them side by side. Whilst cloning Rab7 homologues, we identified splice isoforms for Rab7b only. These splice isoforms, Rab7b2 and Rab7bx8 lacking different exons, have not been previously characterized but suggest alternative function(s) for Rab7b. Thus, we hypothesize that Rab7 homologues have distinct functions. Here, we compare Rab7a and Rab7b nucleotide mutants locked in GDP-bound (Rab7T22N), GTP-bound (Rab7Q67L), nucleotide-free (Rab7aN125I/Rab7bN124I) states and characterized localization of the Rab7b splice isoforms. HeLa cells were transiently transfected with fluorescently tagged Rab7 reporters. Confocal images were processed with ImageJ and analyzed with SPSS. Rab7a and Rab7b nucleotide mutants were significantly different to one another. Approximately 50% of Rab7b splice isoform-expressing cells had aggregated vesicles, which were phenotypically different from Rab7b vesicles. Rab7a and Rab7b vesicles shared approximately 60% colocalization with each other, while Rab7b vesicles preferentially localized to the Trans Golgi Network. Our results suggest Rab7b is distinct from Rab7a, and Rab7b splice isoforms have different biological functions.

摘要

小GTP酶(GTPases)的Rab家族是核苷酸依赖性开关。Rab基因的突变可导致人类疾病。Rab7a和Rab7b从早期内体转变为溶酶体,推测它们的功能相似。大多数研究关注Rab7a,对Rab7b的研究较少,潜在假设是它们功能相似。目前尚未有文章对它们进行并列比较。在克隆Rab7同源物时,我们仅鉴定出了Rab7b的剪接异构体。这些剪接异构体Rab7b2和Rab7bx8缺失不同的外显子,此前尚未被表征,但提示Rab7b可能具有其他功能。因此,我们假设Rab7同源物具有不同的功能。在此,我们比较了锁定在GDP结合态(Rab7T22N)、GTP结合态(Rab7Q67L)、无核苷酸态(Rab7aN125I/Rab7bN124I)的Rab7a和Rab7b核苷酸突变体,并对Rab7b剪接异构体的定位进行了表征。用荧光标记的Rab7报告基因瞬时转染HeLa细胞。共聚焦图像用ImageJ处理并用SPSS分析。Rab7a和Rab7b核苷酸突变体彼此之间存在显著差异。大约50%表达Rab7b剪接异构体的细胞有聚集的囊泡,其表型与Rab7b囊泡不同。Rab7a和Rab7b囊泡彼此之间约有60%共定位,而Rab7b囊泡优先定位于反式高尔基体网络。我们的结果表明Rab7b与Rab7a不同,且Rab7b剪接异构体具有不同的生物学功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4785/11942325/b352a8142f9d/ijms-26-02610-g002.jpg

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