GDF11 and aging biology - controversies resolved and pending

Laura Ben Driss, John Lian, Ryan G. Walker, James A. Howard, Thomas B. Thompson, Lee L. Rubin, Amy J. Wagers, Richard T. Lee
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Abstract

Since the exogenous administration of GDF11, a TGF-ß superfamily member, was reported to have beneficial effects in some models of human disease, there have been many research studies in GDF11 biology. However, many studies have now confirmed that exogenous administration of GDF11 can improve physiology in disease models, including cardiac fibrosis, experimental stroke, and disordered metabolism. GDF11 is similar to GDF8 (also called Myostatin), differing only by 11 amino acids in their mature signaling domains. These two proteins are now known to be biochemically different both in vitro and in vivo . GDF11 is much more potent than GDF8 and induces more strongly SMAD2 phosphorylation in the myocardium compared to GDF8. GDF8 and GDF11 prodomain are only 52% identical and are cleaved by different Tolloid proteases to liberate the mature signaling domain from inhibition of the prodomain. Here, we review the state of GDF11 biology, highlighting both resolved and remaining controversies.
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GDF11和衰老生物学-争议解决和悬而未决
由于外源性给药TGF-ß超家族成员GDF11被报道在一些人类疾病模型中具有有益作用,因此对GDF11生物学的研究也很多。然而,现在许多研究已经证实,外源性给药GDF11可以改善疾病模型的生理,包括心脏纤维化、实验性中风和代谢紊乱。GDF11与GDF8(也称为肌生长抑制素)相似,在其成熟信号域中仅区别11个氨基酸。现在已知这两种蛋白质在体外和体内都具有不同的生化特性。GDF11比GDF8更有效,与GDF8相比,在心肌中诱导更强烈的SMAD2磷酸化。GDF8和GDF11的前结构域只有52%相同,它们被不同的Tolloid蛋白酶切割,从而使成熟的信号域从前结构域的抑制中解放出来。在这里,我们回顾了GDF11生物学的现状,突出了已经解决的和仍然存在的争议。
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