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Hepatocystin is Essential for TRPM7 Function During Early Embryogenesis

机译:早期胚发生过程中肝素对于TRPM7功能至关重要。

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摘要

Mutations in protein kinase C substrate 80K-H (PRKCSH), which encodes for an 80 KDa protein named hepatocystin (80K-H, PRKCSH), gives rise to polycystic liver disease (PCLD). Hepatocystin functions as the noncatalytic beta subunit of Glucosidase II, an endoplasmic reticulum (ER)-resident enzyme involved in processing and quality control of newly synthesized glycoproteins. Patients harboring heterozygous germline mutations in PRKCSH are thought to develop renal cysts as a result of somatic loss of the second allele, which subsequently interferes with expression of the TRP channel polycystin-2 (PKD2). Deletion of both alleles of PRKCSH in mice results in embryonic lethality before embryonic day E11.5. Here, we investigated the function of hepatocystin during Xenopus laevis embryogenesis and identified hepatocystin as a binding partner of the TRPM7 ion channel, whose function is required for vertebrate gastrulation. We find that TRPM7 functions synergistically with hepatocystin. Although other N-glycosylated proteins are critical to early development, overexpression of TRPM7 in Xenopus laevis embryos was sufficient to fully rescue the gastrulation defect caused by loss of hepatocystin. We observed that depletion of hepatocystin in Xenopus laevis embryos decreased TRPM7 expression, indicating that the early embryonic lethality caused by loss of hepatocystin is mainly due to impairment of TRPM7 protein expression.
机译:蛋白激酶C底物80K-H(PRKCSH)中的突变编码一种称为肝囊蛋白的80 KDa蛋白(80K-H,PRKCSH),引起多囊性肝病(PCLD)。肝囊变蛋白起葡萄糖苷酶II的非催化β亚基的作用,葡萄糖苷酶II是一种内质网(ER)驻留酶,参与新合成糖蛋白的加工和质量控制。携带PRKCSH杂合种系突变的患者被认为是由于第二等位基因的体细胞丢失而发展为肾囊肿,继而干扰了TRP通道多囊蛋白2(PKD2)的表达。小鼠PRKCSH的两个等位基因的删除导致在胚胎日E11.5之前的胚胎致死率。在这里,我们调查了非洲爪蟾胚胎发生过程中肝囊藻毒素的功能,并确定了肝囊藻毒素是TRPM7离子通道的结合配偶体,其功能是脊椎动物气化的必需条件。我们发现TRPM7与肝素增效剂协同作用。尽管其他N-糖基化蛋白对于早期发育也很重要,但非洲爪蟾胚胎中TRPM7的过表达足以完全挽救由肝囊蛋白损失引起的胃泌尿功能缺陷。我们观察到,非洲爪蟾胚胎中的肝囊藻蛋白耗竭会降低TRPM7表达,这表明由肝囊藻蛋白损失引起的早期胚胎致死率主要是由于TRPM7蛋白表达受损所致。

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