Tan Yinfei, Xin Xiaoban, Coffey Francis J, Wiest David L, Dong Lily Q, Testa Joseph R
Cancer Biology Program, Fox Chase Cancer Center, Philadelphia, Pennsylvania.
Department of Cellular and Structural Biology, University of Texas Health Science Center at San Antonio, San Antonio, Texas.
J Cell Physiol. 2016 May;231(5):1142-50. doi: 10.1002/jcp.25211. Epub 2015 Oct 21.
Although Appl1 and Appl2 have been implicated in multiple cellular activities, we and others have found that Appl1 is dispensable for mouse embryonic development, suggesting that Appl2 can substitute for Appl1 during development. To address this possibility, we generated conditionally targeted Appl2 mice. We found that ubiquitous Appl2 knockout (Appl2-/-) mice, much like Appl1-/- mice, are viable and grow normally to adulthood. Intriguingly, when Appl1-/- mice were crossed with Appl2-/- mice, we found that homozygous Appl1;Appl2 double knockout (DKO) animals are also viable and grossly normal with regard to reproductive potential and postnatal growth. Appl2-null and DKO mice were found to exhibit altered red blood cell physiology, with erythrocytes from these mice generally being larger and having a more irregular shape than erythrocytes from wild type mice. Although Appl1/2 proteins have been previously shown to have a very strong interaction with phosphatidylinositol-3 kinase (Pi3k) in thymic T cells, Pi3k-Akt signaling and cellular differentiation was unaltered in thymocytes from Appl1;Appl2 (DKO) mice. However, Appl1/2-null mouse embryonic fibroblasts exhibited defects in HGF-induced Akt activation, migration, and invasion. Taken together, these data suggest that Appl1 and Appl2 are required for robust HGF cell signaling but are dispensable for embryonic development and reproduction.
尽管Appl1和Appl2参与了多种细胞活动,但我们和其他人发现Appl1对小鼠胚胎发育并非必需,这表明Appl2在发育过程中可以替代Appl1。为了验证这种可能性,我们构建了条件性靶向的Appl2基因敲除小鼠。我们发现,与Appl1基因敲除小鼠非常相似,全身性Appl2基因敲除(Appl2-/-)小鼠能够存活并正常成长至成年。有趣的是,当将Appl1-/-小鼠与Appl2-/-小鼠杂交时,我们发现纯合的Appl1;Appl2双基因敲除(DKO)动物也能存活,并且在生殖潜能和出生后生长方面大体正常。我们发现Appl2基因敲除小鼠和DKO小鼠的红细胞生理学发生了改变,这些小鼠的红细胞通常比野生型小鼠的红细胞更大,形状也更不规则。尽管先前已证明Appl1/2蛋白在胸腺T细胞中与磷脂酰肌醇-3激酶(Pi3k)有非常强的相互作用,但Appl1;Appl2(DKO)小鼠胸腺细胞中的Pi3k-Akt信号传导和细胞分化并未改变。然而,Appl1/2基因敲除的小鼠胚胎成纤维细胞在HGF诱导的Akt激活、迁移和侵袭方面表现出缺陷。综上所述,这些数据表明Appl1和Appl2对于强大的HGF细胞信号传导是必需的,但对于胚胎发育和繁殖并非必需。