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Functions of the Caenorhabditis elegans regulatory myosin light chain genes mlc-1 and mlc-2.

机译:秀丽隐杆线虫的调节性肌球蛋白轻链基因mlc-1和mlc-2的功能。

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摘要

Caenorhabditis elegans contains two muscle regulatory myosin light chain genes, mlc-1 and mlc-2. To determine their in vivo roles, we identified deletions that eliminate each gene individually and both genes in combination. Functions of mlc-1 are redundant to those of mlc-2 in both body-wall and pharyngeal muscle. mlc-1(0) mutants are wild type, but mlc-1(0) mlc-2(0) double mutants arrest as incompletely elongated L1 larvae, having both pharyngeal and body-wall muscle defects. Transgenic copies of either mlc-1(+) or mlc-2(+) rescue all defects of mlc-1(0) mlc-2(0) double mutants. mlc-2 is redundant to mlc-1 in body-wall muscle, but mlc-2 performs a nearly essential role in the pharynx. Approximately 90% of mlc-2(0) hermaphrodites arrest as L1 larvae due to pharyngeal muscle defects. Lethality of mlc-2(0) mutants is sex specific, with mlc-2(0) males being essentially wild type. Four observations suggest that hermaphrodite-specific lethality of mlc-2(0) mutants results from insufficient expression of the X-linked mlc-1(+) gene in the pharynx. First, mlc-1(0) mlc-2(0) double mutants are fully penetrant L1 lethals in both hermaphrodites and males. Second, in situ localization of mlc mRNAs demonstrates that both mlc-1 and mlc-2 are expressed in the pharynx. Third, transgenic copies of either mlc-1(+) or mlc-2(+) rescue the pharyngeal defects of mlc-1(0) mlc-2(0) hermaphrodites. Fourth, a mutation of the dosage compensation gene sdc-3 suppresses hermaphrodite-specific lethality of mlc-2(0) mutants.
机译:秀丽隐杆线虫包含两个肌肉调节性肌球蛋白轻链基因,mlc-1和mlc-2。为了确定它们的体内作用,我们鉴定了分别消除每个基因和两个基因组合消除的缺失。 mlc-1的功能与mlc-2在体壁和咽肌中的功能都是多余的。 mlc-1(0)突变体是野生型,但mlc-1(0)mlc-2(0)双重突变体因不完全伸长的L1幼虫而被捕,同时具有咽部和体壁肌肉缺陷。 mlc-1(+)或mlc-2(+)的转基因拷贝可以挽救mlc-1(0)mlc-2(0)双重突变体的所有缺陷。 mlc-2对于体壁肌肉中的mlc-1而言是多余的,但是mlc-2在咽部中几乎起着至关重要的作用。大约90%的mlc-2(0)雌雄同体由于咽部肌肉缺陷而作为L1幼虫被捕。 mlc-2(0)突变体的致命性是性别特异性的,而mlc-2(0)雄性则基本上是野生型。四个观察结果表明,mlc-2(0)突变体的雌雄同体特异性致死性是由于咽部中X连锁的mlc-1(+)基因表达不足而导致的。首先,mlc-1(0)mlc-2(0)双重突变体在雌雄同体和雄性动物中都是完全渗透的L1致死性。其次,mlc mRNA的原位定位表明mlc-1和mlc-2均在咽部表达。第三,mlc-1(+)或mlc-2(+)的转基因拷贝可以挽救mlc-1(0)mlc-2(0)雌雄同体的咽部缺损。第四,剂量补偿基因sdc-3的突变抑制mlc-2(0)突变体的雌雄同体特异性杀伤力。

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