Wakefield C Brent, Lee Vanessa R, Johnston Danielle, Boroumand Parastoo, Pillon Nicolas J, Sayedyahossein Samar, O'Donnell Brooke L, Tang Justin, Sanchez-Pupo Rafael E, Barr Kevin J, Gros Robert, Flynn Lauren, Borradaile Nica M, Klip Amira, Beier Frank, Penuela Silvia
Department of Anatomy and Cell Biology, Schulich School of Medicine and Dentistry, University of Western Ontario, London, ON, N6A 5C1, Canada.
Western's Bone and Joint Institute, The Dr. Sandy Kirkley Centre for Musculoskeletal Research, University Hospital, London, ON, N6G 2V4, Canada.
Int J Obes (Lond). 2022 Apr;46(4):726-738. doi: 10.1038/s41366-021-01037-4. Epub 2021 Dec 13.
Pannexin 3 (PANX3) is a channel-forming glycoprotein that enables nutrient-induced inflammation in vitro, and genetic linkage data suggest that it regulates body mass index. Here, we characterized inflammatory and metabolic parameters in global Panx3 knockout (KO) mice in the context of forced treadmill running (FEX) and high-fat diet (HFD).
C57BL/6N (WT) and KO mice were randomized to either a FEX running protocol or no running (SED) from 24 until 30 weeks of age. Body weight was measured biweekly, and body composition was measured at 24 and 30 weeks of age. Male WT and KO mice were fed a HFD from 12 to 28 weeks of age. Metabolic organs were analyzed for a panel of inflammatory markers and PANX3 expression.
In females there were no significant differences in body composition between genotypes, which could be due to the lack of PANX3 expression in female white adipose tissue, while male KOs fed a chow diet had lower body weight and lower fat mass at 24 and 30 weeks of age, which was reduced to the same extent as 6 weeks of FEX in WT mice. In addition, male KO mice exhibited significantly lower expression of multiple pro-inflammatory genes in white adipose tissue compared to WT mice. While on a HFD body weight differences were insignificant, multiple inflammatory genes were significantly different in quadriceps muscle and white adipose tissue resulting in a more anti-inflammatory phenotype in KO mice compared to WT. The lower fat mass in male KO mice may be due to significantly fewer adipocytes in their subcutaneous fat compared to WT mice. Mechanistically, adipose stromal cells (ASCs) cultured from KO mice grow significantly slower than WT ASCs.
PANX3 is expressed in male adult mouse adipose tissue and may regulate adipocyte numbers, influencing fat accumulation and inflammation.
泛连接蛋白3(PANX3)是一种形成通道的糖蛋白,在体外可引发营养物质诱导的炎症,遗传连锁数据表明它可调节体重指数。在此,我们在强迫跑步机跑步(FEX)和高脂饮食(HFD)的背景下,对全球泛连接蛋白3基因敲除(KO)小鼠的炎症和代谢参数进行了表征。
将C57BL/6N(野生型,WT)和KO小鼠随机分为FEX跑步方案组或不跑步组(SED),年龄从24周至30周。每两周测量一次体重,并在24周和30周龄时测量身体组成。雄性WT和KO小鼠在12至28周龄时喂食高脂饮食。对代谢器官进行一组炎症标志物和PANX3表达的分析。
在雌性中,各基因型之间的身体组成没有显著差异,这可能是由于雌性白色脂肪组织中缺乏PANX3表达,而喂食普通饮食的雄性KO小鼠在24周和30周龄时体重较低,脂肪量也较低,降低程度与野生型小鼠6周的FEX运动相同。此外,与野生型小鼠相比,雄性KO小鼠白色脂肪组织中多种促炎基因的表达显著降低。在高脂饮食时,体重差异不显著,但股四头肌和白色脂肪组织中的多种炎症基因存在显著差异,导致KO小鼠比野生型小鼠具有更抗炎的表型。雄性KO小鼠较低的脂肪量可能是由于其皮下脂肪中的脂肪细胞明显少于野生型小鼠。从机制上讲,从KO小鼠培养的脂肪基质细胞(ASC)生长明显比野生型ASC慢。
PANX3在成年雄性小鼠脂肪组织中表达,可能调节脂肪细胞数量,影响脂肪积累和炎症。